MedCORE Reference

Pediatrics

High-yield algorithms, recognition patterns, and exam traps — built for rapid last-minute recall.

Dr. Ahmad Zafar 2025 16 Sections
This MedCORE is not a medical textbook. It is only designed for rapid, last-minute recall and should be treated like a high-yield cheat sheet, not a complete learning resource. Use it to memorize critical algorithms and recognition patterns.

Contents

  1. 1.1Neonatology
  2. 1.2Growth & Development
  3. 1.3Nutrition
  4. 1.4Infectious Diseases
  5. 1.5Neurology
  6. 1.6Respiratory & Allergy
  7. 1.7Congenital Heart Diseases
  8. 1.8Hematology
  9. 1.9Nephrology
  10. 1.10Endocrine
  11. 1.11Viva Topics
  12. 1.12Exam Scenarios
  13. 1.13Bonus: Power Numbers, Buzzwords & Rapid-Fire MCQs
  14. 1.15MCQ Practice Session
  15. 1.16Answer Key & Full Breakdown
Section 1.1

Neonatology

1.1 APGAR Score — Most Asked in Vivas

ScoreAppearancePulseGrimaceActivityRespiration
0Blue/paleAbsentNo responseLimpAbsent
1Body pink, extremities blue<100 bpmGrimace/weak crySome flexionSlow, irregular
2Completely pink>100 bpmCry/cough/sneezeActive movementGood, crying

Timing: 1 minute and 5 minutes after birth.

APGAR TotalInterpretation
7–10Normal
4–6Moderately depressed (needs stimulation, O₂)
0–3Severely depressed (needs immediate resuscitation)
Exam Trap

APGAR is NOT used to decide when to start resuscitation. If the baby is not breathing at birth, start resuscitation immediately — do not wait for the APGAR.

APGAR Timing & Prognostic Significance

TimePurpose
1 minuteDetermines need for immediate resuscitation
5 minutesAssesses response to resuscitation
10 minutesStrongly predictive of neurological outcome if still low

Sarnat Staging of Hypoxic-Ischemic Encephalopathy (HIE)

StageLevelKey FeaturesPrognosis
1MildHyperalert, jittery, normal tone, no seizuresGood
2ModerateLethargic, hypotonic, seizures, abnormal EEGVariable
3SevereComatose, flaccid, absent reflexes, brainstem signsPoor
Therapeutic Hypothermia for HIE
  • Indication: Moderate to severe HIE (Sarnat stage 2–3) in infants ≥36 weeks gestation
  • Method: Whole-body cooling to 33.5°C for 72 hours, then slow rewarming
  • Time window: Must be initiated within 6 hours of birth
  • Reduces: Mortality and neurodevelopmental disability at 18–24 months
  • Monitoring: Continuous temperature, vitals, EEG, and lab monitoring during cooling

1.2 Neonatal Resuscitation — Golden Minute Algorithm

BIRTH
Warm, dry, stimulate — 30 sec
Assess: Breathing? HR >100?
YES → Routine care with mother
NO → Start PPV (positive pressure ventilation)
30 sec PPV → Check HR
HR >100 → Continue PPV
HR <100 → Check ventilation, reposition, suction
Still HR <60 after 30 sec effective PPV?
→ Start CHEST COMPRESSIONS + PPV (3:1)
After 60 sec, check HR
HR still <60 → EPINEPHRINE
Key Points for the Exam
  • Initial steps (30 sec): Dry, warm, position, suction (mouth then nose), stimulate
  • Ventilation: Room air first (NOT 100% O₂) — prevents retinopathy of prematurity
  • Compression technique: Two-thumb encircling hands method
  • Compression depth: 1/3 of chest depth
  • Epinephrine dose: 0.01–0.03 mg/kg IV (0.1–0.3 mL/kg of 1:10,000)
  • Meconium: Vigorous baby → No suction. Depressed baby → Intubation + suction
Viva Traps
  • "When do you start resuscitation?" → Immediately if not breathing; do not wait for APGAR
  • "What O₂ concentration?" → Start with room air (21%), increase if needed
  • "Meconium in vigorous baby?" → No suction needed (routine care)

1.3 Neonatal Jaundice — Classification is Key

Core Concept

Jaundice becomes visible when bilirubin >5 mg/dL. The key to the exam is distinguishing physiological from pathological.

FeaturePhysiologicalPathological
OnsetAfter 24 hoursWithin 24 hours
PeakDay 3–5Variable
Duration<2 weeks>2 weeks
Bilirubin rise<5 mg/dL/day>5 mg/dL/day OR >15 mg/dL
TypeUnconjugatedCan be conjugated
Clinical stateWell babyMay be sick
Danger Signs — Investigate Immediately
  • Jaundice in first 24 hours (ALWAYS pathological)
  • Total bilirubin >15 mg/dL
  • Conjugated bilirubin >2 mg/dL (or >20% of total)
  • Jaundice persisting >2 weeks
  • Sick baby (lethargy, poor feeding, fever)

Causes by Timing

<24 hours (Pathological)24–72 hours>2 weeks (Prolonged)
Hemolytic disease: ABO/Rh incompatibility, G6PD deficiency, hereditary spherocytosisPhysiological (most common); Breastfeeding jaundice (inadequate feeding); Polycythemia; Cephalohematoma / bruising (reabsorption)Breast milk jaundice (breast-fed, well baby); Hypothyroidism (screening!); Biliary atresia (pale stools, dark urine, conjugated); Galactosemia; Sepsis / UTI

Investigations

Management

1.4 Birth Injuries

InjuryRisk FactorKey Feature
Caput succedaneumVertex deliverySoft, crosses suture lines, resolves in days
CephalohematomaInstrumental deliveryFirm, does NOT cross suture lines, resolves in weeks–months
Subgaleal hemorrhageVacuum deliveryLife-threatening: boggy scalp, crosses suture lines, can cause shock
Erb-Duchenne palsyShoulder dystociaC5–C6: waiter's tip posture, loss of shoulder abduction
Klumpke palsyBreech/arm tractionC8–T1: claw hand, Horner syndrome if T1 involved
Fractured clavicleShoulder dystociaMost common fracture, pseudoparalysis, crepitus
Facial nerve palsyForceps deliveryAsymmetric crying facies, forehead sparing

1.5 Rh Incompatibility & TORCH Infections

Rh Incompatibility
  • Pathophysiology: Rh−ve mother, Rh+ve baby → maternal anti-D antibodies cross placenta → hemolysis
  • First pregnancy: Usually unaffected (sensitization occurs at delivery)
  • Subsequent pregnancies: Progressive severity — hydrops fetalis, kernicterus
  • Prevention: Anti-D immunoglobulin at 28 weeks + within 72 hours of delivery

TORCH Infections

InfectionKey Features
ToxoplasmosisCat feces, undercooked meat; intracranial calcifications, hydrocephalus, chorioretinitis
RubellaCongenital: PDA, deafness, cataracts, "blueberry muffin" rash; + maternal rash in pregnancy
CMVMost common congenital infection; microcephaly, periventricular calcifications, SNHL, PETAL
Herpes (HSV)Vesicular rash, encephalitis, disseminated disease; C-section if active lesions
SyphilisSaddle nose, Hutchinson teeth, saber shins, rhinitis; treat with penicillin

1.6 Neonatal Respiratory Distress

CauseOnsetKey Feature
Hyaline Membrane Disease (HMD / RDS)Immediate (preterm)Surfactant deficiency, ground-glass CXR, air bronchograms
Transient Tachypnea of Newborn (TTN)Hours (term/C-section)Benign, self-limited, fluid in fissures on CXR
Meconium Aspiration SyndromeAt birth (post-term)Meconium-stained liquor, chemical pneumonitis, coarse CXR opacities
Congenital PneumoniaFirst daysSepsis features, focal CXR changes
Congenital Heart DiseaseVariableCyanosis, cardiomegaly, abnormal CXR/echo
HMD / RDS — Recognition Pattern
  • Risk: Preterm, C-section, maternal diabetes, male
  • Presentation: Tachypnea, grunting, nasal flaring, intercostal retractions, cyanosis
  • CXR: Ground-glass appearance + air bronchograms
  • Management: Surfactant replacement, CPAP, mechanical ventilation if needed
  • Antenatal prevention: Betamethasone 12 mg IM ×2 doses, 24 h apart, to mother at risk of preterm delivery

1.7 Neonatal Hypoglycemia

Definition
  • At-risk infants: Blood glucose <45 mg/dL (2.6 mmol/L)
  • Term healthy: <40 mg/dL in first 4 hours, <45 mg/dL after

At-risk infants: Prematurity / SGA / IUGR; infant of diabetic mother; perinatal stress (asphyxia, sepsis); polycythemia, Beckwith-Wiedemann syndrome.

Management
  • Asymptomatic: Early feeding + monitor glucose
  • Symptomatic / severe (<25 mg/dL): IV 2 mL/kg 10% dextrose bolus, then dextrose infusion at 6–8 mg/kg/min
  • Target: Glucose >45 mg/dL before feeds
Section 1.2

Growth & Development

2.1 Weight, Height, Head Circumference

ParameterBirth3 mo6 mo9 mo1 yr2 yr
Weight (kg)3.2–3.567.58.59–1012
Height (cm)506065707585–87
HC (cm)34–3540434546–4748–49

Weight doubles by 5 months, triples by 1 year, quadruples by 2 years. HC increases ~10 cm in the first year (2 cm/month 0–3 mo, 1 cm/month 3–6 mo, 0.5 cm/month after 6 mo).

2.2 Developmental Milestones

Exam Tip

Examiners love asking: "What should a child do at X months?" Memorize the key ages below.

AgeGross MotorFine MotorLanguageSocial
6 weeksLifts head brieflyFollows objectsCoosSocial smile
3 monthsHead controlGrasps rattleCoos, turns to voiceRecognizes mother
6 monthsSits with supportTransfers hand-to-handBabblesStranger anxiety begins
9 monthsSits without support, crawlsPincer graspMama/dada (non-specific)Stranger anxiety, peek-a-boo
12 monthsStands alone, may walkCastanet (bangs objects)2–3 words (meaningful)Waves bye-bye, object permanence
18 monthsWalks well, runsTower of 3–4 cubes10–20 wordsFeeds self with spoon
2 yearsKicks ball, climbs stairsTower of 6–7 cubes2-word sentences (50+ words)Parallel play, points to body parts
3 yearsRides tricycleCopies circle3-word sentencesKnows name/age, cooperative play
4 yearsHops on one footCopies cross, draws personTells storiesDresses independently, cooperative play
5 yearsSkipsCopies triangle, writes nameCounts to 10, fluentDresses independently, plays with rules
Red Flags (Developmental Delay)
  • No social smile by 2 months
  • No head control by 4 months
  • No sitting by 9 months
  • No crawling by 12 months
  • No walking by 18 months
  • No words by 18 months
  • Loss of previously acquired milestones (regression)

2.3 Puberty & Growth

EventGirlsBoys
First signBreast bud (thelarche): 8–13 yrTesticular enlargement: 9–14 yr
Growth spurt peak11–12 yr13–14 yr
Menarche / Spermarche12–13 yr13–14 yr
Precocious puberty<8 yr<9 yr
Delayed pubertyNo signs by 13 yrNo signs by 14 yr
Mid-Parental Height Calculation
  • Boys: (Father's height + Mother's height + 13 cm) / 2
  • Girls: (Father's height + Mother's height − 13 cm) / 2
  • Target range: ±8.5 cm
Section 1.3

Nutrition

3.1 Breastfeeding

3.2 Vitamin Deficiencies

VitaminDeficiency DiseaseKey Features
AXerophthalmia, night blindnessBitot spots, keratomalacia, corneal ulceration; preventable blindness
B1 (Thiamine)BeriberiWet: HF, edema; Dry: neuropathy, Wernicke encephalopathy
B3 (Niacin)PellagraDermatitis, Dementia, Diarrhea (3 D's)
B6 (Pyridoxine)Neuropathy, anemiaMicrocytic anemia, infant seizures, irritability
B9 (Folate)Megaloblastic anemiaNeural tube defects in pregnancy, glossitis
B12Pernicious anemiaMegaloblastic anemia, subacute combined degeneration of cord
CScurvyBleeding gums, perifollicular hemorrhages, impaired wound healing, pseudoparalysis
DRicketsBone deformities (bow legs, rachitic rosary, Harrison sulcus), hypocalcemia
EHemolytic anemiaIn preterm infants, neuropathy, retinopathy
KHemorrhagic diseaseGive at birth to prevent VKDB
Rickets — Focus Points
  • Cause: Vitamin D deficiency (lack of sunlight, exclusive breastfeeding without supplement)
  • Features: Craniotabes, frontal bossing, rachitic rosary, Harrison sulcus, bow legs, widened wrist/ankle
  • Treatment: Vitamin D 600,000 IU IM single dose or 300,000 IU orally + calcium
  • Prevention: Daily vitamin D 400 IU for all breastfed infants

3.3 Protein-Energy Malnutrition

FeatureMarasmusKwashiorkor
DeficiencyCalories (protein + energy)Primarily protein
Age<1 year>1 year (usually 1–3 yr)
AppearanceSeverely wastedEdematous
Subcutaneous fatAbsentPresent (but reduced)
EdemaAbsentPresent (pitting)
Skin/hairLoose skin foldsDermatitis, flag sign (hair discoloration)
LiverNormalHepatomegaly (fatty)
PsychiatricIrritableApathetic, miserable
Management Principles
  • STABILIZATION (phase 1): Correct dehydration carefully (ReSoMal or low-Na solutions), treat infections, correct hypoglycemia/hypothermia
  • REHABILITATION (phase 2): Start F-75 formula (75 kcal/100 mL), then transition to F-100 (100 kcal/100 mL) for catch-up growth
  • Feeding schedule: Frequent small feeds (every 2–3 h), avoid overloading
  • Micronutrients: Vitamin A, folate, zinc, copper, iron (iron only in rehabilitation phase)
Section 1.4

Infectious Diseases

4.1 Measles

Recognition Pattern

3 C's: Cough, Coryza, Conjunctivitis + Fever + Maculopapular rash

FeatureDetail
AgentParamyxovirus (RNA)
Incubation10–12 days
Prodrome3 C's + Koplik spots (white spots on buccal mucosa, pathognomonic)
RashErythematous maculopapular, starts behind ears → face → trunk → extremities, becomes brownish
ComplicationsPneumonia (most common cause of death), encephalitis (SSPE years later), otitis media, diarrhea
ManagementSupportive; Vitamin A (reduces severity/mortality); no specific antiviral
PreventionMeasles vaccine at 9 months (1st dose), 15 months (2nd dose)
NotificationNOTIFIABLE disease
Viva Trap
  • "Koplik vs Forchheimer spots?" → Koplik = measles (buccal mucosa); Forchheimer = rubella (soft palate)
  • "Vitamin A in measles?" → Yes: reduces morbidity and mortality, once daily for 2 days

4.2 Rubella (German Measles)

FeatureDetail
AgentRubella virus (RNA)
ProdromeMild fever, lymphadenopathy (suboccipital, post-auricular), arthralgia
RashFine maculopapular, starts on face, spreads rapidly, fades in 3 days
Forchheimer spotsPetechiae on soft palate (pathognomonic)
Congenital rubellaTriad: Cataracts, Deafness, PDA + IUGR, "blueberry muffin" rash
ManagementSupportive; prevention through vaccination (MMR at 12–15 months)

4.3 Chickenpox (Varicella)

FeatureDetail
AgentVaricella-zoster virus (DNA, herpes family)
Incubation14–16 days
RashCrops of vesicles at different stages (macule → papule → vesicle → crust) "dew drops on rose petals"
DistributionCentripetal (more on trunk, less on extremities), includes scalp and mucosa
ComplicationsSecondary bacterial infection, pneumonia (esp. adults), encephalitis, Reye syndrome (with aspirin)
ManagementSymptomatic; NO aspirin (Reye syndrome); Acyclovir if severe/immunocompromised
PreventionVaricella vaccine; VZIG for exposed immunocompromised/neonates
Reye Syndrome: Aspirin + viral illness (chickenpox/influenza) → acute encephalopathy + fatty liver. Never give aspirin to children with viral infections.

4.4 Scarlet Fever

FeatureDetail
AgentGroup A Streptococcus (Streptococcus pyogenes)
ToxinErythrogenic toxin
PresentationFever, sore throat, strawberry tongue, sandpaper rash, Pastia lines
RashFine erythematous, blanching, starts on trunk, desquamates after 1 week
ManagementPenicillin V or Amoxicillin for 10 days (prevents rheumatic fever)

4.5 Kawasaki Disease

Critical — Diagnostic Criteria (fever + 4 of 5)
  • 1. Fever >5 days (high, remittent)
  • 2. Conjunctivitis (bilateral, non-exudative)
  • 3. Oral changes: strawberry tongue, red/cracked lips, pharyngeal erythema
  • 4. Polymorphous rash (truncal)
  • 5. Extremity changes: erythema/edema of hands/feet, periungual desquamation (late)
  • + Cervical lymphadenopathy (>1.5 cm, usually unilateral)
TestFinding
AgeUsually <5 years
PlateletsThrombocytosis (increased in subacute phase)
ESR/CRPMarkedly elevated
EchocardiogramCoronary artery aneurysms (most serious complication)
Management
  • IVIG: 2 g/kg single dose within 10 days (reduces coronary aneurysm risk)
  • High-dose aspirin: 80–100 mg/kg/day q6h (anti-inflammatory) then low-dose 3–5 mg/kg/day (antiplatelet)
  • Follow-up: Echo at diagnosis, 2 weeks, 6–8 weeks

4.6 Pertussis (Whooping Cough)

FeatureDetail
AgentBordetella pertussis (Gram − coccobacillus)
Catarrhal stage1–2 wk: coryza, mild cough, highly infectious
Paroxysmal stage2–4 wk: paroxysms + inspiratory whoop + post-tussive vomiting; apnea in infants
Convalescent stageGradual recovery over weeks to months
DiagnosisNasopharyngeal swab PCR/culture; leukocytosis with lymphocytosis
ManagementMacrolide: Azithromycin 10 mg/kg/day ×5 d or Clarithromycin 15 mg/kg/day ×7 d
PreventionPentavalent/DTaP vaccine (6, 10, 14 wk + boosters)

4.7 Diphtheria

FeatureDetail
AgentCorynebacterium diphtheriae (Gram + bacillus)
ToxinExotoxin inhibits protein synthesis → myocarditis, neuritis
PresentationSore throat, low-grade fever, "bull neck", pseudomembrane (gray, adherent, bleeds on removal)
AirwayPseudomembrane can obstruct → tracheostomy may be needed
ManagementAntitoxin (equine) + Penicillin or Erythromycin
PreventionPentavalent/DTaP vaccine

4.8 Tetanus

FeatureDetail
AgentClostridium tetani (Gram + spore-forming anaerobe)
ToxinTetanospasmin → blocks inhibitory neurotransmitters → rigidity and spasms
PresentationTrismus (lockjaw), risus sardonicus, opisthotonus, spasms triggered by stimuli
Neonatal tetanusUnclean cord cutting; "3-month disease" in Pakistan: refusal to feed, rigidity, spasms
ManagementHTIG 500 IU IM + Metronidazole 30 mg/kg/day IV + wound debridement
PreventionPentavalent/DTaP; tetanus toxoid to pregnant mothers

4.9 Poliomyelitis

FeatureDetail
AgentPoliovirus (Enterovirus, RNA) — 3 serotypes
TransmissionFecal-oral
PresentationFever, malaise, asymmetric flaccid paralysis (lower > upper limbs), no sensory loss, areflexia
Bulbar polioBrainstem: dysphagia, dysphonia, respiratory failure
Post-polio syndromeProgressive weakness decades after infection
DiagnosisStool culture (gold standard), CSF PCR
ManagementSupportive: physiotherapy, respiratory support
PreventionOPV (oral) + IPV (inactivated); Pakistan is one of 2 endemic countries (with Afghanistan)

4.10 Mumps

FeatureDetail
AgentMumps virus (Paramyxovirus)
PresentationFever, bilateral parotitis (earlobe displaced outward/upward), trismus, orchitis in post-pubertal males
ComplicationsMeningitis/encephalitis, orchitis/oophoritis, pancreatitis, deafness
ManagementSupportive; analgesia for orchitis; MMR preventable

4.11 Tonsillopharyngitis

FeatureViralBacterial (GAS)
OnsetGradualAcute/Sudden
FeverLow-gradeHigh fever
TonsilsErythematousExudative (white/yellow patches)
Cough/CoryzaCommonAbsent
Lymph nodesGeneralizedAnterior cervical, tender
Centor criteria0–13–4 (fever, exudate, tender nodes, no cough)
DiagnosisClinicalRapid strep test / throat culture
TreatmentSupportivePenicillin V ×10 d or Amoxicillin

4.12 Croup (Laryngotracheobronchitis)

Recognition Pattern

Barking cough (seal-like) + Stridor + Hoarseness

FeatureDetail
AgentParainfluenza virus (most common)
Age6 months – 3 years
PresentationBarking cough, inspiratory stridor, hoarseness, worse at night, preceded by URI
CXR"Steeple sign" (subglottic narrowing on AP view)
SeverityMild: stridor only with agitation; Moderate: stridor at rest; Severe: stridor + retractions + distress
ManagementMild: Dexamethasone 0.15–0.6 mg/kg PO once; Moderate-Severe: + Nebulized Epinephrine
DifferentialEpiglottitis (NO cough, drooling, distressed, different management)

4.13 Epiglottitis

Emergency: THUMBPRINT SIGN on lateral neck X-ray. High fever, drooling, tripod position, muffled voice, NO cough.
Never Do This
  • DO NOT examine throat with tongue depressor (may cause complete obstruction)
  • DO: Keep child calm, call anesthesia/ENT, prepare for intubation in OR
  • Antibiotics: Ceftriaxone or Cefotaxime IV (cover H. influenzae type b)

4.14 Bronchiolitis

FeatureDetail
AgentRSV — most common
Age<2 years (peak 2–6 months)
PresentationCoryza + fever → tachypnea, wheezing, chest retractions, nasal flaring, cough
SignsChest hyperinflation, wheeze, fine crackles, prolonged expiration
CXRHyperinflation, atelectasis, peribronchial cuffing
ManagementSupportive: Oxygen, nasal suction, hydration; NO bronchodilators routinely
PreventionPalivizumab (monoclonal Ab) for high-risk infants (premature, CHD, CLD)
Viva Trap

"Do you give bronchodilators in bronchiolitis?" → Not routinely. May trial only if previous wheeze/asthma history.

4.15 Pneumonia

WHO Classification of Pneumonia

CategoryCriteriaManagement
No pneumonia (cough/cold)Cough + no tachypnea, no chest indrawingHome care, no antibiotics
PneumoniaCough + tachypneaOral Amoxicillin or Cotrimoxazole
Severe pneumoniaCough + chest indrawing (with/without tachypnea)IV Ampicillin + Gentamicin
Very severe pneumoniaCough + central cyanosis, unable to feed, lethargyIV antibiotics + Oxygen + supportive
Age GroupTachypnea Definition
<2 monthsRR >60/min
2–12 monthsRR >50/min
1–5 yearsRR >40/min

4.16 Tuberculosis in Children

FeatureDetail
Primary TBGhon complex (parenchymal focus + enlarged hilar node); usually asymptomatic
Progressive primaryChildhood TB: cough >2 weeks, fever, weight loss, night sweats, fatigue
Miliary TBDisseminated, "millet seed" CXR, hepatosplenomegaly, meningitis
TB MeningitisBasal exudates, CN VI palsy, CSF: low glucose, high protein, lymphocytosis
DiagnosisMantoux/TST (>10 mm positive in children), GeneXpert, CXR, gastric aspirate
Treatment2 months HRZE (INH, Rifampin, Pyrazinamide, Ethambutol) + 4 months HR
PreventionBCG at birth (prevents severe forms: TB meningitis, miliary TB)

4.17 Meningitis in Children

Emergency — Bacterial Meningitis
  • Classic triad: Fever, Headache, Neck stiffness (may be absent in infants)
  • Infants: Lethargy, poor feeding, vomiting, bulging fontanelle, high-pitched cry, seizures
  • Kernig sign: Pain with knee extension when hip flexed
  • Brudzinski sign: Neck flexion causes hip/knee flexion
FeatureBacterialViral (aseptic)TB
OnsetAcuteAcuteSubacute
CSF appearanceTurbid/purulentClearClear, cobweb clot
CSF GlucoseLow (<40)NormalLow
CSF ProteinHigh (>100)Normal/mild ↑Very high
CSF CellsHigh neutrophilsLymphocytesLymphocytes
Gram stainPositiveNegativeAFB negative (low yield)

4.18 Urinary Tract Infection

FeatureDetail
Definition>10ⁱ CFU/mL on clean-catch, any growth on suprapubic aspirate
Presentation<2 yr: Fever only, poor feeding, vomiting; >2 yr: Dysuria, frequency, suprapubic pain
OrganismsE. coli (80%), Klebsiella, Proteus, Enterococcus
DiagnosisUrine R/E, culture; suprapubic aspiration (gold standard in infants)
ImagingRenal US, MCUG (reflux), DMSA (scarring)
Management<3 mo: IV Ampicillin + Gentamicin; >3 mo: Oral Cephalexin or Cotrimoxazole ×7–14 d

4.19 Acute Gastroenteritis & Dehydration

FeatureSome dehydrationSevere dehydration
General conditionIrritable, thirstyLethargic, limp
EyesSunkenVery sunken
Mouth/tongueDryVery dry
Skin pinchGoes back slowlyGoes back very slowly (>2 sec)
ThirstDrinks eagerlyUnable to drink
PlanPlan B: ORS 75 mL/kg over 4 h + zincPlan C: IV Ringer's Lactate 100 mL/kg
OrganismKey FeatureTreatment
Cholera (V. cholerae)"Rice-water" stools, severe dehydrationDoxycycline (or Azithromycin) + ORS/IV
E. coli (ETEC)Watery diarrhea, traveler's diarrheaSupportive, antibiotics if severe
ShigellaDysentery (blood + mucus), tenesmusCeftriaxone or Azithromycin
RotavirusWinter, vomiting + watery diarrheaSupportive; vaccine available
GiardiaChronic diarrhea, foul-smelling stoolsMetronidazole 15 mg/kg/day ×7 d
AmoebiasisDysentery, liver abscessMetronidazole + Diloxanide furoate

ORS Composition (WHO): Glucose 75 mmol/L, Na 75 mEq/L, K 20 mEq/L, Cl 65 mEq/L, Citrate 10 mmol/L. Zinc 20 mg/day ×14 days for all children with diarrhea.

4.20 Worm Infestations

WormKey FeatureTreatment
Roundworm (Ascaris)Most common; obstruction, pneumonitis (Loeffler)Albendazole 400 mg single dose
Hookworm (Ancylostoma)Iron deficiency anemia (chronic loss)Albendazole 400 mg + Iron
Pinworm (Enterobius)Perianal itching, nocturnal, whole family treatedMebendazole 100 mg, repeat ×2 wk
Tapeworm (Taenia)Pork/beef; proglottids in stoolsPraziquantel or Niclosamide
Whipworm (Trichuris)Dysentery, rectal prolapseAlbendazole 400 mg ×3 d or Mebendazole
Section 1.5

Neurology

5.1 Febrile Seizures

FeatureSimpleComplex
Age6 months – 5 years6 months – 5 years
Duration<15 minutes>15 minutes
TypeGeneralized tonic-clonicFocal or generalized
Number in 24 hSingleMultiple (>1)
Post-ictalBrief, recovers quicklyProlonged, may have Todd's palsy
Recurrence risk30–40%Higher
Management
  • Acute seizure >5 min: Rectal Diazepam 0.5 mg/kg or Buccal Midazolam 0.3 mg/kg
  • Investigate if: <18 months (LP to rule out meningitis), complex features (neuroimaging)
  • NO prophylactic anticonvulsants
  • Parental education: Home management, when to seek emergency care
Viva Traps
  • "Do all febrile seizures need LP?" → NO, only if <18 months or meningitis suspected
  • "Give prophylactic phenobarbitone?" → NO
  • "Can parents give rectal diazepam at home?" → YES, if history of prolonged seizures

5.2 Status Epilepticus

Definition

Seizure lasting >5 minutes OR repeated seizures without recovery of consciousness.

Emergency Protocol
0–5 min (ABC): Airway, Breathing, Circulation; position on side, check glucose, O₂, IV/IO access
5–10 min (First-line): Benzodiazepine: IV Lorazepam 0.1 mg/kg or Rectal Diazepam 0.5 mg/kg or IV Diazepam 0.2 mg/kg
10–20 min (Repeat): Repeat benzodiazepine (same dose, once)
20–40 min (Second-line): Phenytoin 20 mg/kg IV over 20 min OR Fosphenytoin 20 mg PE/kg OR Phenobarbitone 20 mg/kg IV
>40 min (Third-line/ICU): Midazolam infusion / Propofol / Thiopentone; Intubation + ventilation; EEG monitoring
Common Causes in Children
  • Febrile seizures
  • CNS infections (meningitis, encephalitis)
  • Epilepsy (non-compliant with meds)
  • Metabolic (hypoglycemia, hyponatremia, hypocalcemia)
  • Toxins, trauma
Section 1.6

Respiratory & Allergy

6.1 Acute Severe Asthma (Status Asthmaticus)

FeatureMild-ModerateSevereLife-Threatening
TalkingSentencesWordsUnable to speak
AlertnessAgitatedAgitatedDrowsy/confused
WheezeLoudLoudSilent chest
Accessory musclesYesYesParadoxical movement
HR<100 (>5 yr)>125 (>5 yr)Bradycardia
SpO₂>92%<92%<92%
PEF>50% predicted33–50%<33%
Immediate Management (First Hour)
  1. Oxygen high-flow, target SpO₂ 94–98%
  2. Salbutamol neb 2.5 mg (<5 yr) or 5 mg (>5 yr); back-to-back every 20 min ×3 or continuous
  3. Ipratropium bromide 250–500 mcg added to salbutamol
  4. Systemic steroids within 1 h: Prednisolone 1–2 mg/kg PO (max 40 mg) or IV Hydrocortisone 4 mg/kg
  5. Reassess after 1 hour
  6. IV Magnesium sulfate 40 mg/kg (max 2 g) over 20 min, single dose
  7. IV Salbutamol infusion 1–5 mcg/kg/min (ICU, monitor K⁺)
  8. Consider intubation / ICU if impending respiratory failure
Danger Signs & Viva Traps
  • Danger: Silent chest, cyanosis, poor effort, exhaustion, bradycardia, hypotension
  • "Antibiotics in asthma?" → NO (unless bacterial confirmed)
  • "When to intubate?" → Exhaustion, decreased consciousness, respiratory arrest
  • "Why silent chest bad?" → No air movement (complete obstruction)

6.2 Anaphylaxis

Definition & Clinical Criteria

Severe, life-threatening systemic allergic reaction. Diagnose if ANY one present:

  • Sudden onset (<2 h) involving skin/mucosa PLUS respiratory compromise OR hypotension
  • Two or more of: skin/mucosa, respiratory compromise, hypotension, GI symptoms
  • Hypotension after known allergen exposure
Emergency Management
  1. EPINEPHRINE IM: 0.01 mg/kg of 1:1000 (0.01 mL/kg), max 0.3 mg (<6 yr) / 0.5 mg (>6 yr), anterolateral thigh, repeat q5–15 min
  2. Call for help / activate emergency response
  3. Position: lie flat + raise legs (if hypotensive); sitting (if respiratory distress); recovery (if unconscious)
  4. Oxygen high-flow
  5. IV fluids: 20 mL/kg bolus (if hypotensive)
  6. Antihistamines (second-line): Chlorpheniramine 0.2 mg/kg IV/IM
  7. Corticosteroids: Hydrocortisone 5 mg/kg IV (prevents biphasic)
  8. Bronchodilators: Salbutamol neb if wheeze
  9. Observe 4–24 h for biphasic reaction (20% of cases)

Discharge: prescribe EpiPen, educate avoidance, medical alert bracelet, refer to allergist.

Viva Favorites
  • "Why IM, not IV epinephrine?" → IM safer, adequate absorption, less arrhythmia (IV only if cardiac arrest)
  • "On beta-blockers?" → May not respond; give glucagon 1–2 mg IV
  • "Antihistamine first-line?" → NO! Epinephrine ALWAYS first
Section 1.7

Congenital Heart Diseases

7.1 Classification

Cyanotic (5 T's)
  • Tetralogy of Fallot
  • Transposition of Great Arteries
  • Tricuspid Atresia
  • Truncus Arteriosus
  • Total Anomalous Pulmonary Venous Return
Acyanotic
  • L→R shunts: VSD, ASD, PDA
  • Obstructive: Coarctation, AS, PS

7.2 Tetralogy of Fallot (Most common cyanotic CHD)

The 4 Defects
  1. VSD (large)
  2. Overriding aorta
  3. Pulmonary stenosis (RVOT obstruction) — determines severity
  4. RV hypertrophy (consequence)
FeatureDetail
PresentationCyanosis; "Tet spells" (hypercyanotic episodes triggered by crying, feeding, defecation)
SquattingIncreases SVR → decreases R→L shunt → increases pulmonary flow
CXR"Boot-shaped heart" (coeur en sabot) — concave PA segment, upturned apex (RVH)
ECGRight axis deviation, RVH
Tet spell managementKnee-chest position, O₂, Morphine 0.1 mg/kg SC/IM, IV fluids, Propranolol, Phenylephrine
Definitive treatmentTotal surgical correction at 6–12 months

7.3 Transposition of Great Arteries (TGA)

FeatureDetail
PathologyAorta from RV, PA from LV → two parallel circulations (incompatible without mixing)
Survival depends onVSD, ASD, or PDA (allows mixing)
PresentationCyanosis from birth, tachypnea, may have no murmur
CXR"Egg-on-string"; narrow mediastinum; increased pulmonary vascular markings
Immediate managementProstaglandin E1 infusion (keep PDA open)
ProcedureBalloon atrial septostomy (Rashkind)
DefinitiveArterial switch operation (first 2 weeks of life)

7.4 Ventricular Septal Defect

Most common CHD — 30% of all CHD. Types: Perimembranous (most common), muscular, inlet, outlet.

Paradox

Small VSD = louder murmur (high-velocity jet through small opening creates more turbulence). Roger disease: small, hemodynamically insignificant VSD with loud murmur.

FeatureSmall VSDModerate VSDLarge VSD
SymptomsAsymptomaticMild tachypnea with feedsHeart failure, FTT, recurrent chest infections
MurmurLoud holosystolic at LLSBHolosystolic + apical diastolic flowSofter murmur
ThrillPresentPresentMay be absent
GrowthNormalMildly affectedSeverely affected
CXRNormalCardiomegaly, increased markingsMarked cardiomegaly, pulmonary edema
Natural historyMany close spontaneously (30–50% by 2–4 yr)VariableProgressive pulmonary HTN

7.5 Atrial Septal Defect

Pathognomonic — Fixed Splitting of S2
  • S2 normally splits with inspiration; in ASD the split is wide and does not change with respiration
  • Mechanism: Constant increased RV volume → delayed pulmonic valve closure
  • Murmur: Systolic ejection at pulmonic area (increased flow across normal pulmonary valve)
TypeLocationAssociation
Ostium secundumMid-septumMost common
Ostium primumLower septumDown syndrome
Sinus venosusUpper septumPartial anomalous pulmonary venous return

Management: Small ASD may close spontaneously; significant ASD: device closure or surgical repair at 2–4 years. Goal: prevent arrhythmias, paradoxical embolism, pulmonary HTN.

7.6 Patent Ductus Arteriosus

Recognition Pattern
  • Continuous "machinery" murmur: throughout systole AND diastole, best at left infraclavicular area, radiates to back
  • Bounding pulses: wide pulse pressure, "water-hammer" pulse, continuous runoff into PA during diastole
  • Hyperactive precordium, tachypnea, poor feeding in large PDA
  • Maternal rubella in first trimester (congenital rubella syndrome)
SettingManagement
Premature infantsIndomethacin or Ibuprofen (inhibits prostaglandin synthesis); most effective first 2 weeks; CI: renal failure, bleeding, NEC
Term infantsMedical closure less effective; device closure (>6 mo); surgical ligation if not feasible

7.7 Coarctation of Aorta

Classic Presentation
  • "Upper body hypertension + Lower body hypotension"
  • BP higher in upper limbs than lower limbs
  • Radiofemoral delay: weak/delayed femoral pulses
  • Rib notching on CXR (collateral circulation via intercostals)
  • "Figure of 3" sign on CXR at coarctation site
  • Associated with Turner syndrome, bicuspid aortic valve
Management
  • Medical: Prostaglandin E1 if duct-dependent; treat heart failure
  • Definitive: Surgical repair or balloon angioplasty
  • Follow-up: Monitor for recoarctation, persistent hypertension
Section 1.8

Hematology

8.1 Anemia in Children

AgeHemoglobin Threshold
6 months – 5 years<11 g/dL
5–12 years<11.5 g/dL
>12 years<12 g/dL (F), <13 g/dL (M)
Classification by MCV
  • MICROCYTIC (MCV <80): Iron deficiency, Thalassemia, anemia of chronic disease, Lead poisoning
  • NORMOCYTIC (MCV 80–100): Acute blood loss, Hemolytic anemia
  • MACROCYTIC (MCV >100): B12 deficiency, Folate deficiency, anemia of chronic disease, bone marrow failure, Hypothyroidism, Liver disease

8.2 Iron Deficiency Anemia

Most common nutritional deficiency worldwide.

Risk FactorsClinical Features
Premature birthPallor, fatigue, irritability
Exclusive BF >6 months without ironPica (craving non-food items)
Early introduction of cow's milkPagophagia (craving ice)
Chronic blood lossKoilonychia (spoon-shaped nails)
Rapid growth periodsGlossitis, angular stomatitis
Poor dietary intakeDelayed development (severe)
Lab TestFinding
HemoglobinDecreased
MCVDecreased
Ferritin<15 ng/mL (diagnostic)
TIBCIncreased
Transferrin saturation<15%
RDWIncreased
Peripheral smearMicrocytic hypochromic RBCs, pencil cells
Viva Traps
  • "When to transfuse?" → Only if Hb <4 g/dL with cardiac compromise
  • "Black stools with iron?" → Normal, reassure parents
  • "No response to iron?" → Check compliance, consider thalassemia trait

8.3 Thalassemia

Core Concept

Inherited disorder of hemoglobin synthesis. Common in Mediterranean, Middle East, South Asia, Pakistan.

Beta-Thalassemia Major (Cooley Anemia)

AspectDetail
GeneticsHomozygous mutation
Presentation4–6 months (when HbF declines); severe anemia requiring transfusions; FTT; hepatosplenomegaly
Skeletal"Chipmunk facies", "hair-on-end" skull (X-ray), bossing
LaboratoryHb 3–6 g/dL; microcytic hypochromic; target cells, nucleated RBCs; HbF elevated, HbA absent/low
ComplicationsIron overload (cardiac, hepatic, endocrine), osteoporosis, thrombosis
ManagementTransfusions q2–4 wk + chelation (Desferrioxamine/Deferasirox) + folic acid + splenectomy if hypersplenism; BMT curative

Beta-Thalassemia Minor (Trait)

AspectDetail
GeneticsHeterozygous mutation
PresentationAsymptomatic or mild anemia; important for genetic counseling
LaboratoryMCV disproportionately low; Mentzer index <13 (MCV/RBC); HbA2 elevated
ManagementNo treatment; genetic counseling for couples

Alpha-Thalassemia

TypeGenes DeletedClinical Features
Silent carrier1 geneAsymptomatic, normal labs
Trait2 genesMild microcytic anemia
HbH disease3 genesModerate anemia, splenomegaly
Hydrops fetalis4 genesIncompatible with life, stillborn

8.4 Sickle Cell Disease

Core Concept

Abnormal hemoglobin (HbS) causes RBCs to sickle under low O₂. Autosomal recessive. HbSS = disease, HbAS = trait (asymptomatic). Common in Africa, Middle East, India.

CrisisFeaturesManagement
Vaso-occlusive (Pain)Most common; severe bone pain; triggered by infection, dehydration, coldHydration, analgesia, O₂
Acute chest syndromeLeading cause of death; fever, cough, chest pain, dyspnea, new infiltrateAntibiotics, O₂, hydration, exchange transfusion if severe
Splenic sequestrationSudden massive splenomegaly, severe anemia, shock (<5 yr)Emergency transfusion
Aplastic crisisSudden Hb drop, low reticulocytes; Parvovirus B19Transfusion, supportive
StrokeHighest risk 2–10 yr; screen with TCDChronic transfusion if high risk
Chronic Management
  • Preventive: Penicillin prophylaxis 2 mo–5 yr; Pneumococcal/Hib/meningococcal vaccines; Folic acid; Hydroxyurea (increases HbF, reduces crises); annual TCD from age 2
  • Acute: Hydration, analgesia (NSAIDs/opioids), O₂ if hypoxic, antibiotics if infection, transfusion if severe
  • Curative: Bone marrow transplant
  • Autosplenectomy: Non-functional spleen by age 5 → increased infection risk (encapsulated organisms)

8.5 G6PD Deficiency

Most common enzyme deficiency worldwide. X-linked recessive (males affected, females carriers). Common in Mediterranean, Africa, Middle East, South Asia.

Triggers of Hemolysis
  • Infections: Most common trigger
  • Drugs: Primaquine, Chloroquine, Sulfonamides, Nitrofurantoin, Ciprofloxacin, Aspirin, Vitamin K, Methylene blue
  • Foods: Fava beans
  • Chemicals: Naphthalene (mothballs)
Clinical Features & Lab Findings
  • Acute hemolytic anemia: Pallor, jaundice, dark urine (hemoglobinuria), back/abdominal pain
  • Neonatal jaundice: May cause severe hyperbilirubinemia
  • Lab: Anemia with reticulocytosis; bite cells, blister cells; Heinz bodies; elevated indirect bilirubin, LDH; low haptoglobin
  • Diagnosis: G6PD enzyme assay (may be normal during acute hemolysis → recheck after crisis)
Management
  • Acute: Stop offending agent, hydration, transfusion if severe
  • Preventive: Avoid triggers, educate family, genetic counseling
Section 1.9

Nephrology

9.1 Acute Kidney Injury

KDIGO Criteria (ANY one)
  • Serum Cr increased by ≥0.3 mg/dL within 48 hours
  • Serum Cr ≥1.5× baseline within 7 days
  • Urine output <0.5 mL/kg/hr for 6 hours
TypeCauseUrineBUN/Cr
Pre-renal (70%)Dehydration, shock, hemorrhage, HFConcentrated, Na<20 mEq/L>20:1
Intrinsic renalATN, GN, HUSDilute, Na>40, muddy brown casts<20:1
Post-renalPosterior urethral valves, stonesVariable, hydronephrosis on USVariable
Indications for Dialysis (AEIOU)

Acidosis · Electrolyte abnormalities (hyperkalemia) · Intoxications · Overload (fluid) · Uremia (encephalopathy/pericarditis)

9.2 Hemolytic Uremic Syndrome (HUS)

Triad
  1. Microangiopathic hemolytic anemia
  2. Thrombocytopenia
  3. Acute kidney injury

Most common cause of AKI in children.

Typical HUS (90%)Atypical HUS (10%)
CauseE. coli O157:H7 (Shiga toxin)Genetic complement abnormalities
Preceded byBloody diarrheaNo diarrhea
AgeYoung childrenAny age
PrognosisGood, most recoverWorse, high recurrence
Management
  • Supportive care: fluid/electrolyte management; transfusion if severe anemia; dialysis if indicated
  • Avoid: Antibiotics (may worsen HUS), antidiarrheals, platelet transfusions (unless active bleeding)
  • Atypical HUS: Eculizumab (complement inhibitor)

9.3 Nephrotic Syndrome

Tetrad
  1. Proteinuria: >40 mg/m²/hr or urine protein/Cr ratio >2
  2. Hypoalbuminemia: <2.5 g/dL
  3. Edema: Generalized
  4. Hyperlipidemia
TypeKey Features
Minimal Change Disease (MCD)Most common (80–90%); age 2–6 yr; steroid-responsive; good prognosis
FSGSLess common; steroid-resistant; progressive renal failure
MPGNLow complement; associated with infections (Hepatitis C)
Section 1.10

Endocrine

10.1 Diabetes Mellitus Type 1

Most common endocrine disease in children. Autoimmune destruction of β-cells. Peak: 10–14 yr.

Classic Presentation (4 P's)

Polyuria, Polydipsia, Polyphagia, Weight loss. Plus enuresis in previously toilet-trained child, fatigue, blurred vision, recurrent candidiasis.

Diagnosis (ANY one)
  • Fasting glucose ≥126 mg/dL
  • Random glucose ≥200 mg/dL + symptoms
  • HbA1c ≥6.5%
  • OGTT 2-hour glucose ≥200 mg/dL
Diabetic Ketoacidosis: Triad = Hyperglycemia (>200) + Ketosis + Metabolic acidosis (pH <7.3, HCO₃ <15). IV fluids (0.9% saline 10–20 mL/kg bolus → deficit over 48 h) → Insulin 0.05–0.1 U/kg/hr after fluids → K⁺ replacement. Cerebral edema is the most serious complication.

10.2 Congenital Hypothyroidism

Core Concept

Most common preventable cause of intellectual disability.

10.3 Short Stature

Height <3rd percentile or <−2 SD below mean for age and sex.

CategoryCauseKey Feature
EndocrineGH deficiency, Hypothyroidism, CushingLow growth velocity, delayed bone age
Skeletal dysplasiaAchondroplasiaDisproportionate short stature
Chronic diseaseCeliac, IBD, CHD, Renal failurePoor growth velocity, systemic symptoms
GeneticTurner syndrome, Down syndromeDysmorphic features
MalnutritionPEM, micronutrient deficienciesHistory of poor nutrition
PsychosocialNeglect, abuseEnvironmental factors
Variants of Normal
  • Familial short stature: Parents short; normal growth velocity; bone age = chronological age
  • Constitutional delay: Delayed growth AND puberty; bone age < chronological age; "late bloomer"; achieves normal adult height

Approach: Plot growth chart; bone age X-ray; TFT; CBC/ESR; celiac screening; karyotype if Turner suspected; GH stimulation test / IGF-1 if GH deficiency.

Section 1.11

Viva Topics

11.1 Tanner Staging (Sexual Maturity Rating)

Girls

StageBreast DevelopmentPubic Hair
1PrepubertalNone
2Breast bud (thelarche) — first signSparse, straight, along labia
3Breast and areola enlargeDarker, coarser, spreads
4Areola and nipple form secondary moundAdult type, limited area
5Mature, nipple projectsAdult distribution, spreads to thighs

Boys

StageGenital DevelopmentPubic Hair
1PrepubertalNone
2Testicular enlargement >4 mL — first signSparse, straight, at base of penis
3Penis lengthens, testes/scrotum enlargeDarker, coarser, spreads
4Penis width increases, glans developsAdult type, limited area
5Adult size and shapeAdult distribution, spreads to thighs

Menarche: Usually at Tanner stage 4, about 2 years after thelarche.

11.2 Developmental Milestones Quick Reference

AgeKey Milestones
6 weeksSocial smile
3 monthsHead control, coos
6 monthsSits with support, transfers objects, babbles, stranger anxiety begins
9 monthsSits without support, crawls, pincer grasp, mama/dada (non-specific)
12 monthsStands, may walk, 2–3 words (meaningful), waves bye-bye, object permanence
18 monthsWalks well/runs, 10–20 words, feeds self with spoon
2 yearsKicks ball, 2-word sentences (50+ words), parallel play, points to body parts
3 yearsRides tricycle, copies circle, knows name/age, cooperative play, toilet trained
4 yearsHops on one foot, tells stories, copies cross, dresses independently
5 yearsSkips, copies triangle, counts to 10, dresses independently

11.3 Birth Weight Milestones

MilestoneTiming
Birth weight regained10–14 days
Birth weight doubles5 months
Birth weight triples1 year
Birth weight quadruples2 years

Weight formulas: 3–12 months = Birth weight + (age in months × 0.7 kg); 1–6 years = (Age × 2) + 8 kg

11.4 Fontanelle Closure

FontanelleNormal Closure
Anterior12–18 months (usually by 18 months)
PosteriorBy 2–3 months

11.5 Dentition

Section 1.12

Exam Scenarios

12.1 Pediatric Examination Stations

Scenario 1 — Respiratory System
  • Inspection: General appearance, nutritional status; distress (tachypnea, retractions, nasal flaring, cyanosis); chest shape (barrel, Harrison sulcus, pectus); skin (clubbing, cyanosis)
  • Palpation: Chest expansion, vocal fremitus, tracheal position
  • Percussion: Compare both sides, note dullness or hyperresonance
  • Auscultation: Breath sounds (vesicular, bronchial); added sounds (wheeze, crackles, stridor)
  • Complete with: Temperature, plot growth, check O₂ saturation
Scenario 2 — Cardiovascular System
  • Inspection: Cyanosis, clubbing, distress, precordial bulge, visible pulsations
  • Palpation: Pulse (rate, rhythm, volume, radiofemoral delay), apex beat, thrills, hepatomegaly
  • Auscultation: Heart sounds (S1, S2, splitting); murmurs (location, timing, character, radiation); BP
  • Complete with: All peripheral pulses, BP in all four limbs, HF signs
Scenario 3 — Development
  • Infant (0–12 mo): Gross motor (head control, sitting, standing); Fine (grasp, transfer); Social (smile, stranger anxiety); Language (cooing, babbling, words)
  • Toddler (1–3 yr): Gross (walking, running, stairs, tricycle); Fine (tower, drawing); Social (parallel play, feeding self); Language (word count, sentences)
  • Preschool (3–5 yr): Gross (hopping, skipping); Fine (copying shapes); Social (cooperative play, dressing); Language (sentences, storytelling)
  • Always: Plot on growth chart; check milestones; look for red flags

12.2 Common Clinical Questions

Q: Causes of Failure to Thrive
  • Non-organic (most common): Inadequate feeding practices, poverty/neglect, maternal depression
  • Organic: GI (Celiac, chronic diarrhea, GER); Cardiac (CHD); Respiratory (CLD, CF); Renal (CKD); Endocrine (Hypothyroidism, DM); Infections (TB, HIV)
  • Key: Thorough feeding/social history; plot growth; examine for systemic signs
Q: Causes of Hepatosplenomegaly
  • Infections: Viral (EBV, CMV, hepatitis); Bacterial (sepsis, typhoid); Parasitic (Malaria, Kala-azar)
  • Hematological: Thalassemia major, Sickle cell, Leukemia/lymphoma, hemolytic anemias
  • Metabolic: Glycogen storage diseases, Gaucher, Niemann-Pick
  • Cardiac: Congestive heart failure
  • Hepatic: Cirrhosis, portal hypertension
  • Infiltrative: Malignancy
  • Approach: Confirm organomegaly, look for associated features, investigate (CBC, smear, LFTs, US)
Q: Child with Fever and Rash
  • With cough/coryza: Measles (3 C's, Koplik spots, descending rash)
  • Scarlatiniform: Scarlet fever (strawberry tongue, sandpaper rash); Kawasaki (5 d fever, conjunctivitis, strawberry tongue)
  • Vesicular: Chickenpox (crops at different stages); Hand-foot-mouth (palms, soles, mouth)
  • Petechial/purpuric: Meningococcemia (non-blanching, ill); ITP (petechiae, well child)
  • Slapped cheek: Fifth disease / Parvovirus B19
  • Approach: Assess severity, meningeal signs, blanching, manage accordingly
Section 1.13

Bonus: Power Numbers, Buzzwords & Rapid-Fire MCQs

Power Numbers

Must-Know Values
ParameterValue
HR Newborn120–160/min
HR Infant100–160/min
HR Child70–120/min
HR Adolescent60–100/min
RR <2 mo<60/min
RR 2–12 mo<50/min
RR 1–5 yr<40/min
Hb 6 mo–5 yr>11 g/dL
Hb 5–12 yr>11.5 g/dL
Birth weight doubles5 months
Birth weight triples1 year
Anterior fontanelle closure18 months
First tooth6 months
BCGAt birth
Measles vaccine 1 / 29 mo / 15 mo
Iron therapy3–6 mg/kg/day ×3 mo
Febrile seizure<15 min = simple
Nephrotic steroids60 mg/m²/day ×4–6 wk
DKA insulin0.05–0.1 U/kg/hr

Buzzword Bank

BuzzwordThink of...
"Social smile absent at 2 months"Red flag, assess development
"Fixed split S2"ASD
"Machinery murmur"PDA
"Boot-shaped heart"Tetralogy of Fallot
"Egg-on-string" on CXRTGA
"Squatting after exertion"TOF
"Tet spell"TOF hypercyanotic crisis
"Rice-water stools"Cholera
"Strawberry tongue"Scarlet fever or Kawasaki
"Koplik spots"Measles
"Target sign on US"Intussusception
"Red currant jelly stools"Intussusception
"Barking cough"Croup
"Steeple sign"Croup
"Drooling + tripod position"Epiglottitis
"Thumbprint sign"Epiglottitis
"Knee-chest position"TOF spell management
"Hair-on-end" skull X-rayThalassemia major
"Chipmunk facies"Thalassemia major
"Heinz bodies, bite cells"G6PD deficiency
"Schistocytes"HUS, microangiopathic hemolysis
"Muddy brown casts"Acute tubular necrosis
"Frothy urine + periorbital edema"Nephrotic syndrome
"Kussmaul breathing + fruity breath"DKA
"Prolonged jaundice in newborn"Congenital hypothyroidism, biliary atresia

Rapid-Fire MCQ Practice (from the source sheet)

Drill — Question & Answer
  1. 6-month-old, exclusively breastfed, pale. Hb 8 g/dL, MCV 65. Most likely diagnosis? → Iron deficiency anemia
  2. 3-year-old, sudden severe pallor, splenomegaly, Hb 10 → 4 g/dL, reticulocytes 0.5%. Recent URI. Diagnosis? → Aplastic crisis (Parvovirus B19 in sickle cell)
  3. Newborn at 36 hours, jaundice to chest, bilirubin 18 mg/dL. Management? → Phototherapy
  4. 2-year-old, recurrent chest infections, FTT, steatorrhea. Investigation of choice? → Sweat chloride test (Cystic fibrosis)
  5. 18-month-old, GTC seizure with fever 39°C lasting 3 min, fully conscious after 5 min. Diagnosis? → Simple febrile seizure
  6. 4-year-old, sudden dyspnea, drooling, sitting forward, muffled voice, high fever. First action? → Keep calm, call anesthesia (Epiglottitis)
  7. 8-year-old with periorbital edema, frothy urine, BP normal. Urine 4+ protein. Treatment? → Oral prednisolone (Nephrotic syndrome)
  8. Newborn, cyanosis at birth, CXR "egg-on-string". Immediate management? → Prostaglandin E1 (TGA)
  9. 5-month-old, breast-fed, not started complementary feeds. When to start? → 6 months
  10. Child with VSD, which is TRUE? (a) Large VSD loud murmur (b) All need surgery (c) Small VSD louder murmur (d) Holosystolic at apex → Small VSD has louder murmur
Section 1.15

MCQ Practice Session

Q1 A1: A 30-minute-old term male newborn, delivered by uncomplicated vaginal delivery, has an Apgar of 3 at 1 minute with no cry and central cyanosis. He is not breathing spontaneously. The nurse asks when resuscitation should begin. What is the correct next step?
Q2 A2: A term 39-week male, born after a difficult delivery, develops seizures at 6 hours of life. Exam: lethargic, hypotonic, intermittent seizures with an abnormal EEG. He is diagnosed with Sarnat stage 2 hypoxic-ischemic encephalopathy. Which management is indicated?
Q3 A3: A 4-day-old term male develops jaundice within the first 24 hours of life. Total bilirubin is 18 mg/dL with a direct component of 1 mg/dL. The infant is otherwise alert and feeding. How is this best characterized?
Q4 A4: An Rh-negative woman delivered an Rh-positive infant in her first pregnancy; the baby was unaffected. She is now pregnant again and the fetus shows hydrops fetalis on ultrasound. Which intervention prevents this in future Rh-negative pregnancies?
Q5 A5: A 30-week preterm male develops tachypnea, grunting, nasal flaring and intercostal retractions at 2 hours of age. Chest X-ray shows a ground-glass appearance with air bronchograms. What is the definitive initial management?
Q6 A6: An infant of a diabetic mother has a bedside glucose of 22 mg/dL and is symptomatic with jitteriness. Vitals stable. What is the correct immediate management?
Q7 A7: A 3-month-old infant has never smiled socially and has poor head control. By what age is absent social smile a red flag for developmental delay?
Q8 A8: A 7-year-old girl develops breast budding (thelarche) with no virilization or masses. How is this best classified?
Q9 A9: A boy's father is 180 cm tall and his mother is 165 cm tall. Using the mid-parental height formula for boys, what is his expected adult height?
Q10 A10: A mother asks whether she can give her healthy 4-month-old son water and formula in addition to breastfeeding. What is the correct advice?
Q11 A11: A 1-year-old has bow legs, craniotabes, frontal bossing and widened wrists. X-ray shows widened epiphyses; vitamin D is low. What is the treatment?
Q12 A12: An 18-month-old is severely wasted with absent subcutaneous fat and loose skin folds, irritable, with no edema. He was weaned onto a dilute rice-gruel diet. What is the most likely diagnosis?
Q13 A13: A 3-year-old has 3 days of cough, coryza and conjunctivitis followed by a maculopapular rash starting behind the ears and spreading downward. Exam reveals white spots on the buccal mucosa. What is the diagnosis?
Q14 A14: A 3-year-old has 6 days of high fever, bilateral non-exudative conjunctivitis, strawberry tongue, a truncal polymorphous rash, edema of the hands and feet, and a 2 cm unilateral cervical lymph node. Which treatment reduces the risk of coronary aneurysm?
Q15 A15: A 2-year-old has a 2-day history of URI followed by a barking cough and inspiratory stridor that is present at rest, with no drooling. How is the croup severity classified?
Q16 A16: A 4-year-old suddenly develops high fever, drooling, sits forward in the tripod position with a muffled voice and no cough. Lateral neck X-ray shows a thumbprint sign. What is the first step?
Q17 A17: A 3-month-old has coryza and fever progressing to tachypnea, wheeze, chest retractions and nasal flaring. Chest is hyperinflated with fine crackles; RSV is detected. What is the mainstay of management?
Q18 A18: A 6-month-old has cough and a respiratory rate of 70/min with chest indrawing but no central cyanosis. Per WHO classification, what is this and how is it managed?
Q19 A19: An 8-month-old has 2 days of fever, lethargy, poor feeding and vomiting. Exam: bulging anterior fontanelle, high-pitched cry. LP yields turbid CSF with neutrophils, glucose 20 mg/dL, protein 180 mg/dL. What is the empiric treatment?
Q20 A20: A 5-month-old girl has 2 days of unexplained fever (39.5°C), poor feeding and vomiting. Urinalysis shows >10ⁱ CFU/mL. What is the initial management?
Q21 A21: A 1-year-old in a cholera outbreak has abrupt onset of profuse watery "rice-water" stools with severe dehydration (lethargic, sunken eyes, skin pinch >2 sec). What is the key management?
Q22 A22: A 4-year-old has perianal itching worse at night; the whole family is affected and eggs are seen on tape test. What is the treatment?
Q23 A23: A 2-year-old has a 10-minute generalized tonic-clonic seizure during a 39°C febrile illness, a single episode, fully recovering within minutes. What is the correct management?
Q24 A24: A 7-year-old has a seizure ongoing for 12 minutes with IV access established. What is the appropriate first-line acute treatment?
Q25 A25: A 7-year-old's seizure has continued for 25 minutes despite two doses of benzodiazepine and the child is still convulsing. What is the next step?
Q26 A26: An 8-year-old known asthmatic is brought in with a silent chest, drowsy, SpO2 88%, and unable to speak. What is the priority action?
Q27 A27: A 10-year-old asthmatic has words only, SpO2 93%, and PEF 45% of predicted. How is the severity classified?
Q28 A28: A 9-year-old eats peanut and within 20 minutes develops urticaria, wheezing and hypotension. What is the first-line immediate treatment?
Q29 A29: A viva examiner asks why epinephrine is given intramuscularly rather than intravenously in anaphylaxis. What is the best answer?
Q30 A30: A 1-year-old with known Tetralogy of Fallot develops a hypercyanotic "tet" spell after crying. What is the immediate management?
Q31 A31: In Tetralogy of Fallot, which of the four defects determines the severity of cyanosis?
Q32 A32: A newborn is cyanotic from birth with an "egg-on-string" appearance on CXR and increased pulmonary vascular markings. What is the immediate management?
Q33 A33: A child with a small VSD has a loud holosystolic murmur, while a child with a large VSD has a softer murmur. This paradox occurs because:
Q34 A34: A child has a widely split S2 that does not change with inspiration. Where is the murmur generated?
Q35 A35: A 1-week-old preterm infant has a continuous "machinery" murmur and a large PDA. What is the recommended first-line closure method?
Q36 A36: A 9-year-old has upper-limb hypertension, weak delayed femoral pulses, and rib notching on CXR. What does rib notching indicate?
Q37 A37: A 3-year-old has a hemoglobin of 10.5 g/dL. Is this anemia?
Q38 A38: A 1-year-old is pale and irritable, exclusively breastfed beyond 6 months without iron supplementation. Labs: Hb 7, MCV 60, ferritin 8, TIBC high, pencil cells on smear. What is the diagnosis?
Q39 A39: A child begins oral iron therapy for iron deficiency anemia. When do you expect the reticulocyte count to rise?
Q40 A40: An 8-month-old has failure to thrive, hepatosplenomegaly, "chipmunk facies" and Hb 5 g/dL with target cells and nucleated RBCs; HbF is elevated. What is the diagnosis?
Q41 A41: A 5-year-old with known sickle cell disease develops sudden pallor and massive splenomegaly; Hb drops from 10 to 4 g/dL with reticulocytes 0.5% after a recent URI. What is the diagnosis?
Q42 A42: A 2-year-old develops jaundice and dark urine after eating fava beans; smear shows bite cells and Heinz bodies. The most likely trigger is:
Q43 A43: A 4-year-old with severe gastroenteritis has concentrated urine (Na <20 mEq/L), a BUN/Cr ratio >20:1, and improves with fluid resuscitation. The AKI type is:
Q44 A44: A 3-year-old had bloody diarrhea and now has microangiopathic hemolytic anemia, thrombocytopenia and acute kidney injury. Which intervention is contraindicated?
Q45 A45: A 3-year-old has periorbital edema, 4+ proteinuria, hypoalbuminemia (<2.5 g/dL) and hyperlipidemia. What is the first-line treatment?
Q46 A46: A 12-year-old with new polyuria and weight loss has pH 7.1, glucose 400 mg/dL, and positive ketones. When should insulin be started?
Q47 A47: Newborn screening for congenital hypothyroidism is performed by:
Q48 A48: A 9-year-old has low growth velocity, delayed bone age, normal parents, and no systemic illness. This pattern is most consistent with:
Q49 A49: A 2-year-old has failure to thrive. The most appropriate initial approach is:
Q50 A50: On cardiac exam a child has a widely split S2 that does not change with inspiration. This is pathognomonic of:
Section 1.16

Answer Key & Full Breakdown

Q1 — Answer & Breakdown

Correct: A) APGAR at 1 and 5 minutes, repeat every 5 min until ≥7

Concept: APGAR timing & interpretation Recall

Why A: APGAR scores the transition at 1 and 5 minutes; if <7 it is repeated every 5 min to document recovery, and it guides resuscitation intensity.

Discriminator: "Needs resuscitation" alone is not enough — the score must be serial.

B) Cord pH onlyAn adjunct for asphyxia, never replaces serial APGAR transition scoring
C) BallardEstimates gestational age, not transition
D) DubowitzMaturity scoring, not immediate transition
E) SilvermanRespiratory-distress scoring, not the global transition screen

Trap: Mixing gestational-age/maturity tools with transition scoring.

Future alert: APGAR at 1 and 5 min; repeat every 5 min until ≥7.

Q2 — Answer & Breakdown

Correct: A) Cooling (33.5°C) within 6 h for 72 h, if ≥36 wk and pH <7 or base deficit ≥16

Concept: Neonatal hypoxic-ischemic encephalopathy (HIE) Recall

Why A: Therapeutic hypothermia within 6 h for moderate-to-severe HIE in ≥36-week infants reduces death and neurodisability.

Discriminator: Apnea/brady alone does not qualify; you need pH <7 or base deficit ≥16 with an abnormal neuro exam.

B) HyperthermiaWorsens neuronal injury
C) High-dose phenobarbitalNo proven benefit in HIE
D) DexamethasoneNot indicated
E) No interventionMisses a proven therapy

Trap: Treating outside the window or without criteria.

Future alert: HIE → cooling 33.5°C within 6 h, 72 h, in ≥36 wk with pH <7 or BD ≥16.

Q3 — Answer & Breakdown

Correct: A) Jaundice <24 h, rises >5 mg/dL/day, direct >2, or lethargy

Concept: Pathological jaundice criteria Recall

Why A: These are the danger signs; physiologic peaks around day 3–4 at ~10–12 mg/dL and is indirect, benign.

Discriminator: The exam wants the danger signs, not the benign "recent feeds" story.

B) Appears day 3, normal feedsClassic physiologic pattern
C) Resolves by 1 wk (term)Physiologic in the term infant
D) Indirect-only, mildPhysiologic
E) Breast-milk jaundiceCommon benign entity

Trap: Calling benign physiologic jaundice pathological.

Future alert: Jaundice <24 h, >5/day, direct >2, or lethargy → pathological, act.

Q4 — Answer & Breakdown

Correct: A) Anti-D 300 µg at 28 wk and within 72 h of birth (if infant RhD+)

Concept: Rh prophylaxis Recall

Why A: Given to the non-sensitized RhD-negative mother at 28 wk and <72 h after a sensitizing event, it prevents alloimmunization.

Discriminator: Already sensitized (anti-D present) → no benefit.

B) At 20 wkToo early to cover the at-risk period
C) At 12 wkNo indication that early
D) To the RhD+ motherWrong recipient — give to RhD-negative
E) Both parents Rh-negativeNo fetomaternal Rh conflict

Trap: Wrong mother or wrong timing.

Future alert: RhD-negative mother → anti-D at 28 wk and <72 h after delivery.

Q5 — Answer & Breakdown

Correct: A) Surfactant via ETT + antenatal maternal steroids before 34 wk

Concept: RDS prevention and treatment Recall

Why A: Surfactant deficiency causes atelectasis and ground-glass CXR; treat with surfactant via ETT and support with CPAP, prevent with antenatal steroids.

Discriminator: Oxygen alone does not fix the surfactant deficiency.

B) Oxygen aloneInsufficient for surfactant deficiency
C) Antibiotics first-lineOnly if sepsis is suspected
D) DiureticsNot first-line
E) Fluid restrictionNot the treatment

Trap: Treating the symptom (O2) instead of the cause (surfactant).

Future alert: Preterm respiratory distress → antenatal steroids + surfactant via ETT.

Q6 — Answer & Breakdown

Correct: A) Dextrose 2 mL/kg of 10% IV bolus, then maintenance infusion

Concept: Neonatal hypoglycemia emergency Recall

Why A: Symptomatic or markedly low glucose needs IV 10% dextrose bolus to protect the brain, then a maintenance infusion.

Discriminator: Asymptomatic mild lows may feed; symptomatic needs IV dextrose, not just feeding.

B) Oral feed onlyFails if symptomatic or unsafe to feed
C) IM glucagonOnly if infusion fails
D) ObserveDangerous — brain injury risk
E) InsulinWrong direction entirely

Trap: Under-treating symptomatic hypoglycemia.

Future alert: Symptomatic/low-glucose neonate → IV 10% dextrose 2 mL/kg bolus.

Q7 — Answer & Breakdown

Correct: A) 2 months

Concept: Psychomotor milestones Recall

Why A: Social smile is expected by 2 months; absence beyond that is a red flag warranting developmental/autism screening.

Discriminator: Earlier smiling is reflexive, not social.

B) 4 monthsAlready overdue as a screen trigger
C) 6 monthsVery late
D) 9 monthsMisses the window
E) 12 monthsFar too late

Trap: Milestone-age confusion.

Future alert: No social smile by 2 months → screen.

Q8 — Answer & Breakdown

Correct: A) Precocious puberty (<8 years)

Concept: Puberty timing Recall

Why A: Thelarche before 8 years in girls is precocious and needs evaluation for central vs peripheral causes.

Discriminator: No virilization rules out CAH; age <8 defines precocious.

B) Normal variant<8 yr is pathologic, not a variant
C) Delayed pubertyOpposite
D) Constitutional delayOpposite
E) Isolated thelarcheNot a classification; warrants workup

Trap: Misreading a clear pathology as benign.

Future alert: Thelarche/pubarche <8 yr → precocious, evaluate.

Q9 — Answer & Breakdown

Correct: A) 179 cm (range ±8.5 cm)

Concept: Mid-parental height Recall / Computation

Why A: Boys: (father + mother + 13) / 2 = (180 + 165 + 13) / 2 = 179; target range ±8.5 cm.

Discriminator: Use +13 for boys; the sex offset is the common error.

B) 165 cmMother's height only
C) 172.5 cmAveraged without the +13 offset
D) 187 cmArithmetic error
E) 157.5 cmWrong formula

Trap: Arithmetic / sex-offset error.

Future alert: Boys MPH = (father + mother + 13) / 2 ±8.5.

Q10 — Answer & Breakdown

Correct: A) Exclusive breastfeeding for the first 6 months — no water, no other milk

Concept: Infant feeding Recall

Why A: Exclusive breastfeeding for 6 months, then complementary foods with continued breastfeeding to 2 years; water is not needed.

Discriminator: Water at 4 months is unnecessary; solids start at 6 months.

B) Add water nowNot needed at 4 months
C) Switch to formula at 4 moNo indication
D) Start solids at 4 moToo early
E) Stop breastfeeding at 4 moContrary to guidance

Trap: Early-supplementation myths.

Future alert: Exclusive breastfeeding for 6 months.

Q11 — Answer & Breakdown

Correct: A) Vitamin D 600,000 IU IM single dose plus calcium

Concept: Nutritional rickets treatment Recall

Why A: High-dose (stoss) vitamin D with calcium repletion heals the bone disease; radiology confirms healing.

Discriminator: Calcium alone does not fix the underlying vitamin D deficiency.

B) Calcium aloneIncomplete — deficiency is vitamin D
C) Vitamin CThat is for scurvy
D) ObservationBone disease progresses
E) Iron replacementDifferent deficiency

Trap: Treating one deficiency and missing the other.

Future alert: Rickets → vitamin D stoss + calcium.

Q12 — Answer & Breakdown

Correct: A) Marasmus

Concept: Protein-energy malnutrition types Recall

Why A: Chronic severe energy deficit → wasting, absent subcutaneous fat, loose skin folds, irritable, and NO edema; kwashiorkor presents with edema.

Discriminator: Edema absent = marasmus; edema present = kwashiorkor.

B) KwashiorkorHas pitting edema
C) BothNot the picture here
D) Normal for ageClearly abnormal
E) ScurvyBleeding gums, not wasting

Trap: Confusing the two forms of PEM.

Future alert: Wasting + no edema = marasmus.

Q13 — Answer & Breakdown

Correct: A) Measles

Concept: Viral exanthems Recall

Why A: The 3 C's prodrome (cough, coryza, conjunctivitis) plus Koplik spots and a descending rash from the head is measles.

Discriminator: Koplik spots are pathognomonic; rubella is milder and short-lived.

B) RubellaMilder, brief, post-auricular nodes
C) Scarlet feverSandpaper rash, strawberry tongue, no Koplik
D) VaricellaVesicular, centripetal
E) RoseolaFever first, then rash as fever ends

Trap: Exanthem confusion.

Future alert: 3 C's + Koplik spots = measles.

Q14 — Answer & Breakdown

Correct: A) IVIG 2 g/kg single dose within 10 days

Concept: Kawasaki disease treatment Recall

Why A: Fever ≥5 days with ≥4 of 5 criteria; IVIG within 10 days with aspirin cuts coronary-aneurysm risk.

Discriminator: Treatment is IVIG, not steroids or antibiotics.

B) Aspirin aloneInsufficient without IVIG
C) High-dose steroidsNot first-line
D) Empirical antibioticsDoes not address vasculitis
E) ObservationRisks coronary aneurysm

Trap: Under-treatment.

Future alert: Kawasaki → IVIG 2 g/kg within 10 days.

Q15 — Answer & Breakdown

Correct: A) Moderate croup

Concept: Croup severity grading Recall

Why A: Stridor at rest defines moderate croup; mild croup has stridor only when upset.

Discriminator: At-rest stridor separates moderate from mild.

B) Mild croupStridor only with agitation
C) Severe croupAdds sternal retraction, cyanosis, low SpO2
D) EpiglottitisNo cough, drooling, tripod
E) BronchiolitisWheeze, not stridor

Trap: Severity grading.

Future alert: Stridor at rest = moderate croup.

Q16 — Answer & Breakdown

Correct: A) Keep the child calm and call anesthesia/ENT; prepare intubation in the OR

Concept: Epiglottitis airway emergency Recall

Why A: The airway is the threat; never agitate or force a throat exam — secure it in the OR.

Discriminator: Tripod + drooling + muffled voice + NO cough = epiglottitis.

B) Examine throat with depressorMay precipitate arrest
C) Oral amoxicillinAfter the airway is secured
D) Intubate at bedsideRisky without a controlled setting
E) Chest X-rayLateral neck shows the thumbprint, but airway comes first

Trap: Forcing the exam / delaying the airway.

Future alert: Epiglottitis → secure airway in the OR, do not disturb.

Q17 — Answer & Breakdown

Correct: A) Supportive: oxygen, nasal suction, hydration; no routine bronchodilators

Concept: Bronchiolitis management Recall

Why A: RSV bronchiolitis is supportive; bronchodilators are not routinely beneficial.

Discriminator: Young infant + preceding URI + wheeze + hyperinflation.

B) Routine bronchodilatorNot proven to help
C) Systemic steroidsNo benefit
D) IV antibioticsOnly if bacterial superinfection
E) DiureticsNo role

Trap: Over-treatment.

Future alert: Bronchiolitis → supportive, no routine bronchodilators.

Q18 — Answer & Breakdown

Correct: A) Severe pneumonia — IV ampicillin + gentamicin

Concept: WHO pneumonia classification Recall

Why A: RR >60 with chest indrawing and no cyanosis = severe pneumonia → IV antibiotics; very severe adds cyanosis or general danger signs.

Discriminator: Indrawing + tachypnea = severe, not very severe.

B) Oral amoxicillinFor non-severe pneumonia
C) Very severeNeeds cyanosis / danger signs
D) No pneumoniaClearly pneumonia
E) Bronchodilator onlyWrong — this is pneumonia

Trap: Misclassifying severity.

Future alert: Severe pneumonia (RR↑ + indrawing) → IV ampicillin + gentamicin.

Q19 — Answer & Breakdown

Correct: A) Ceftriaxone + vancomycin

Concept: Bacterial meningitis empiric therapy Recall

Why A: Turbid CSF, low glucose, high protein = bacterial; cover pneumococcus/Hib/meningococcus with ceftriaxone + vancomycin (neonate adds ampicillin for Listeria).

Discriminator: Low glucose + high protein confirms bacterial, not viral.

B) AcyclovirFor HSV, not the first empiric cover
C) Ampicillin onlyMisses pneumococcus
D) Dexamethasone aloneAdjunct, not therapy
E) BenzylpenicillinNarrower than needed

Trap: Too-narrow coverage.

Future alert: Bacterial meningitis → ceftriaxone + vancomycin.

Q20 — Answer & Breakdown

Correct: A) IV ampicillin + gentamicin

Concept: Neonatal / infant UTI Recall

Why A: Under 3 months or toxic → IV ampicillin + gentamicin; rule out pyelonephritis and sepsis.

Discriminator: Age <3 months = high risk, treat IV.

B) Oral cephalexinFor older, low-risk outpatients
C) ObservationDangerous in this age
D) Surgical referralNot the acute step
E) Withhold antibioticsWrong

Trap: Treating infant UTI as outpatient.

Future alert: Infant <3 months with UTI → IV ampicillin + gentamicin.

Q21 — Answer & Breakdown

Correct: A) Doxycycline (or azithromycin in children) + IV fluids / ORS

Concept: Cholera management Recall

Why A: Rehydration is lifesaving; a single-dose antibiotic shortens shedding and duration (tetracycline class / azithromycin).

Discriminator: Antimotility and NPO worsen the picture.

B) LoperamideContraindicated — worsens toxic megacolon risk
C) ORS onlyAdequate only if mild; severe needs IV + antibiotic
D) MetronidazoleNot the agent for cholera
E) Nothing by mouthDangerous — rehydration is the cure

Trap: Withholding antibiotics / antimotility abuse.

Future alert: Cholera → rehydrate + single-dose antibiotic.

Q22 — Answer & Breakdown

Correct: A) Mebendazole 100 mg, repeat after 2 weeks (treat household)

Concept: Enterobius (pinworm) treatment Recall

Why A: Mebendazole / albendazole with a repeat dose and household treatment clears the infestation.

Discriminator: Family involvement requires treating contacts.

B) Albendazole single onlyNeeds the repeat dose
C) PraziquantelFor flukes / tapeworms
D) IronWrong problem
E) Topical steroidWrong problem

Trap: Single dose without retreatment.

Future alert: Pinworm → mebendazole, repeat in 2 weeks, treat family.

Q23 — Answer & Breakdown

Correct: A) No prophylactic anticonvulsants; reassure and treat the fever

Concept: Simple febrile seizure Recall

Why A: A single <15-min seizure with full recovery is benign; no prophylaxis, just safety, fever control, and education.

Discriminator: Without meningitis signs, LP is not routine.

B) Phenobarbital prophylaxisNot indicated
C) LP routinelyOnly if meningitis suspected
D) Daily diazepamNot for simple febrile seizures
E) Admit for IV antibioticsNot routine

Trap: Over-investigation / prophylaxis.

Future alert: Simple febrile seizure → reassure, no prophylaxis.

Q24 — Answer & Breakdown

Correct: A) Benzodiazepine (IV lorazepam 0.1 mg/kg)

Concept: Status epilepticus first-line Recall

Why A: A benzodiazepine within 5 minutes is first-line; second-line is phenytoin / levetiracetam.

Discriminator: Established seizure >5 minutes.

B) PhenytoinSecond-line
C) PropofolRefractory stage
D) IV glucoseOnly if hypoglycemia
E) MagnesiumEclampsia context

Trap: Skipping the benzo to second-line.

Future alert: Status → benzo first.

Q25 — Answer & Breakdown

Correct: A) Phenytoin 20 mg/kg IV over 20 minutes

Concept: Status epilepticus second-line Recall

Why A: If the seizure persists 20–40 minutes after benzodiazepines, give IV phenytoin / levetiracetam.

Discriminator: Beyond 40–60 minutes = refractory, needs ICU/paralysis.

B) Repeat benzo 3rdAfter two doses, move to second-line
C) Intubate + propofolRefractory stage
D) IV glucoseNot unless indicated
E) ObserveDangerous

Trap: Looping the benzodiazepine.

Future alert: Status persists >20 min → phenytoin / levetiracetam.

Q26 — Answer & Breakdown

Correct: A) Intubation / ICU admission

Concept: Life-threatening asthma Recall

Why A: Silent chest, drowsy, SpO2 <92%, unable to speak = life-threatening → senior help, ICU, possible intubation.

Discriminator: A silent chest means exhaustion, not improvement.

B) Oral salbutamolInsufficient at this severity
C) ObserveFatal delay
D) DischargeWrong
E) AntibioticsNot the primary issue

Trap: Misreading a silent chest as improving.

Future alert: Silent chest / drowsy → life-threatening asthma, ICU.

Q27 — Answer & Breakdown

Correct: A) Severe

Concept: Asthma severity by PEF Recall

Why A: Words only + SpO2 93% + PEF 45% predicted sits in the severe band (PEF 33–50%, cannot complete sentences).

Discriminator: PEF 33–50% = severe; <33% = life-threatening.

B) Mild-moderatePEF >50%
C) Life-threateningPEF <33% / silent chest
D) ModeratePEF >50% and able to talk
E) ResolvingNo evidence of that

Trap: Severity by PEF bands.

Future alert: PEF 33–50% + limited speech = severe asthma.

Q28 — Answer & Breakdown

Correct: A) IM epinephrine 0.01 mg/kg of 1:1000 into the anterolateral thigh

Concept: Anaphylaxis emergency Recall

Why A: Immediate IM epinephrine to the thigh, repeat q5–15 min; secure airway, O2, IV fluids.

Discriminator: Hypotension + urticaria + wheeze after exposure.

B) AntihistamineAdjunct only
C) CorticosteroidAdjunct only
D) Oxygen onlyInsufficient
E) IV fluids onlyNot first-line

Trap: Adjunct before epinephrine.

Future alert: Anaphylaxis → IM epinephrine first.

Q29 — Answer & Breakdown

Correct: A) IM is safer with less arrhythmia risk; IV only if cardiac arrest

Concept: Epinephrine route in anaphylaxis Recall

Why A: IV epinephrine risks fatal arrhythmia; the IM thigh gives rapid, safe absorption.

Discriminator: IV is reserved for arrest / refractory cases.

B) IM is fasterNot the reason
C) IM is cheaperIrrelevant
D) IM is less painfulIrrelevant
E) IM absorbs betterIV would absorb more — the issue is safety

Trap: Route safety.

Future alert: Epinephrine IM, not IV, unless arrest.

Q30 — Answer & Breakdown

Correct: A) Knee-chest position, O₂, morphine, IV fluids, propranolol

Concept: Tetralogy of Fallot "tet" spell Recall

Why A: These raise systemic vascular resistance and reduce RVOT spasm; severe spells need phenylephrine, sedation, bicarbonate.

Discriminator: Crying precipitates spells; the goal is to increase SVR.

B) Prostaglandin E1For duct-dependent lesions like TGA, not a tet spell
C) Immediate intubationNot first-line
D) DiureticsNo role
E) TransfusionNo role

Trap: Confusing duct-dependent vs tet spell.

Future alert: Tet spell → knee-chest + increase SVR.

Q31 — Answer & Breakdown

Correct: A) Pulmonary stenosis (RVOT obstruction)

Concept: TOF pathophysiology Recall

Why A: The degree of RVOT obstruction sets the right-to-left shunt and thus the cyanosis severity; the VSD is non-restrictive.

Discriminator: More stenosis = more cyanosis; a "pink tet" has minimal stenosis.

B) VSDPresent but non-restrictive
C) Overriding aortaAnatomic, not the severity driver
D) RV hypertrophyA consequence
E) ASDNot part of TOF

Trap: Picking the wrong defect as the driver.

Future alert: TOF cyanosis ∝ pulmonary stenosis severity.

Q32 — Answer & Breakdown

Correct: A) Prostaglandin E1 to keep the PDA open

Concept: Transposition of the great arteries Recall

Why A: TGA is duct-dependent; PGE1 maintains mixing until an arterial switch.

Discriminator: Egg-on-string + cyanosis from birth + increased pulmonary flow.

B) Arterial switch nowNot the immediate stabilization step
C) High-flow oxygenIneffective without mixing
D) DiureticsNo role here
E) AspirinNo role

Trap: Treating cyanosis with oxygen (ineffective in TGA without mixing).

Future alert: TGA → PGE1 keep the PDA open.

Q33 — Answer & Breakdown

Correct: A) A small defect creates a higher-velocity jet → more turbulence (louder)

Concept: VSD murmur mechanism Interpretation

Why A: A small restrictive VSD gives a high-velocity jet and a loud murmur; a large non-restrictive defect has a low gradient and a softer, earlier-closing murmur.

Discriminator: Loudness is inversely related to size — the paradox.

B) Large defects are always louderFalse — the opposite
C) Size has no effectFalse
D) Small defects produce no turbulenceFalse
E) Only shunt volume mattersFalse

Trap: The VSD loudness paradox.

Future alert: Small VSD = loud murmur (paradox).

Q34 — Answer & Breakdown

Correct: A) Increased RV volume delays pulmonic valve closure

Concept: ASD physiology Interpretation

Why A: The left-to-right shunt increases RV filling so the pulmonary valve closes late and FIXED (it does not shorten with inspiration).

Discriminator: Fixed split = ASD; a wide but variable split suggests pulmonary stenosis.

B) Mitral regurgitationDoes not produce a split S2
C) Tricuspid regurgitationNo
D) Aortic stenosisNo
E) PDAGives a continuous murmur

Trap: Confusing the cause of the split.

Future alert: Fixed split S2 = ASD.

Q35 — Answer & Breakdown

Correct: A) Indomethacin or ibuprofen (inhibits prostaglandin synthesis)

Concept: Preterm PDA closure Recall

Why A: A symptomatic preterm PDA closes medically with a COX inhibitor; surgery is for failures.

Discriminator: Term PDAs are often asymptomatic; preterms are symptomatic.

B) Surgical ligation firstNot first-line
C) Prostaglandin E1Opens the duct — the opposite
D) FurosemideFor CHF, not closure
E) ObservationRisky in a symptomatic preterm

Trap: Opening vs closing reversal.

Future alert: Preterm PDA → indomethacin / ibuprofen.

Q36 — Answer & Breakdown

Correct: A) Collateral circulation via intercostal arteries (coarctation)

Concept: Coarctation signs Interpretation

Why A: Upper-limb hypertension + weak delayed femoral pulses + rib notching (erosion by collateral intercostals) = coarctation.

Discriminator: Notching means collaterals — think coarctation in an older child with a BP discrepancy.

B) TOFCyanotic, no notching
C) TGACyanotic newborn
D) ASDNo notching
E) PDANo notching

Trap: Missing coarctation in an older child.

Future alert: Upper HTN + weak femoral pulse + rib notching = coarctation.

Q37 — Answer & Breakdown

Correct: A) Yes — threshold for 6 months–5 years is <11 g/dL

Concept: Anemia thresholds by age Recall

Why A: Anemia is Hb <11 (6mo–5yr), <11.5 (5–11yr), <12 (12–14yr); this child is below the band.

Discriminator: The threshold shifts by age band.

B) NormalBelow the band
C) PolycythemiaNo
D) Borderline only if <10Too low a cutoff
E) Cannot be determinedIt can

Trap: Wrong age-band threshold.

Future alert: Anemia at 6mo–5yr if Hb <11.

Q38 — Answer & Breakdown

Correct: A) Iron deficiency anemia

Concept: Microcytic anemia differentiation Interpretation

Why A: Exclusive breastfeeding past 6 months without iron + low ferritin + high TIBC + pencil cells = IDA.

Discriminator: Low ferritin + high TIBC = iron deficiency; thalassemia has normal/high ferritin.

B) Beta-thal traitNormal/high ferritin, target cells, formula
C) Chronic diseaseLow iron, LOW TIBC
D) Lead poisoningBasophilic stippling
E) Normal variantNot normal

Trap: IDA vs thalassemia trait.

Future alert: Low ferritin + high TIBC = IDA.

Q39 — Answer & Breakdown

Correct: A) 3–5 days

Concept: Iron-therapy response Recall

Why A: Reticulocytosis peaks at 3–5 days; Hb rises ~1 g/dL per week, normalizes in 6–8 weeks, then continue 3 months.

Discriminator: Reticulocytes rise early, Hb later.

B) Within 24 hoursToo soon
C) 2 weeksHb not yet normalized
D) 1 monthLater than the reticulocyte peak
E) NeverFalse

Trap: Timing of the response.

Future alert: Iron → reticulocytes rise in 3–5 days.

Q40 — Answer & Breakdown

Correct: A) Beta-thalassemia major

Concept: Hemoglobinopathy presentation Interpretation

Why A: Failure to thrive + hepatosplenomegaly + chipmunk facies + high HbF + target cells and nucleated RBCs at 8 months = Cooley's.

Discriminator: Presents after 6 months when HbF falls; high HbF is the clue.

B) Iron deficiencyMicrocytic but no HbF/facies
C) Sickle cellSickled cells, not high HbF picture
D) G6PDEpisodic hemolysis
E) Lead poisoningNo

Trap: Presents only after 6 months.

Future alert: FTT + hepatosplenomegaly + high HbF = thalassemia major.

Q41 — Answer & Breakdown

Correct: A) Aplastic crisis (Parvovirus B19)

Concept: Sickle-cell complications Interpretation

Why A: Sudden anemia + severe reticULOcytopenia + splenomegaly after a URI = transient aplastic crisis; Parvo B19 suppresses erythropoiesis.

Discriminator: LOW retics (vs sequestration: HIGH retics).

B) Vaso-occlusive crisisPain, HIGH retics
C) Splenic sequestrationHIGH retics, sudden splenic enlargement
D) Acute chestFever + chest symptoms
E) StrokeNeurological deficit

Trap: Aplastic (low retics) vs sequestration (high retics).

Future alert: Sickle + sudden anemia + LOW retics = aplastic crisis.

Q42 — Answer & Breakdown

Correct: A) Fava beans

Concept: G6PD trigger identification Recall

Why A: Fava beans and oxidative drugs precipitate hemolysis; smear shows bite cells and Heinz bodies.

Discriminator: Episodic jaundice after fava / drugs is the signature.

B) Cow's milkNot a trigger
C) Iron deficiencyUnrelated
D) Viral infection onlyFava is also a trigger
E) None of the aboveFava is the trigger

Trap: Missing the trigger.

Future alert: Hemolysis after fava = G6PD.

Q43 — Answer & Breakdown

Correct: A) Pre-renal (70% of pediatric AKI)

Concept: AKI types Interpretation

Why A: Concentrated urine (Na <20, BUN/Cr >20:1) that responds to fluids = pre-renal dehydration.

Discriminator: Intrinsic AKI has FENa >2 and muddy-brown casts.

B) Intrinsic (ATN)FENa >2, muddy casts
C) Post-renalObstruction
D) ChronicChronic changes
E) NonePre-renal fits

Trap: Pre-renal vs intrinsic.

Future alert: Pre-renal AKI = low Na, high BUN/Cr, responds to fluids.

Q44 — Answer & Breakdown

Correct: A) Antibiotics (may worsen HUS)

Concept: STEC-HUS management Recall

Why A: Avoid antibiotics and antimotility agents in STEC-HUS; treatment is supportive (fluids, dialysis, transfusion as needed).

Discriminator: Bloody diarrhea + MAHA + thrombocytopenia + AKI.

B) Fluid/electrolyte supportDo this
C) Transfusion if severeDo this
D) Dialysis if indicatedDo this
E) Supportive careDo this

Trap: Giving harmful antibiotics.

Future alert: STEC-HUS → avoid antibiotics.

Q45 — Answer & Breakdown

Correct: A) Oral prednisolone 60 mg/m²/day for 4–6 weeks, then taper

Concept: Nephrotic syndrome treatment Recall

Why A: Steroid-sensitive NS responds to high-dose prednisolone followed by a taper; relapses use the same approach.

Discriminator: Edema + heavy proteinuria + hypoalbuminemia + hyperlipidemia.

B) AntibioticsNo role
C) Diuretic monotherapyNo
D) ACE inhibitor onlyNo
E) PlasmapheresisSteroid-resistant only

Trap: Under-treatment.

Future alert: First nephrotic episode → prednisolone 60 mg/m².

Q46 — Answer & Breakdown

Correct: A) After fluids, at 0.05–0.1 U/kg/hr IV

Concept: DKA management sequence Recall

Why A: Fluids come first (20 mL/kg bolus if shock), then an insulin infusion; a bolus before fluids risks cerebral edema.

Discriminator: Insulin after fluids; replace potassium as needed.

B) Immediate IV bolus before fluidsRisks cerebral edema
C) Only after 24 hoursToo late
D) Oral hypoglycemicDKA needs IV insulin
E) Not neededWrong

Trap: Insulin before fluids → cerebral edema.

Future alert: DKA → fluids before insulin.

Q47 — Answer & Breakdown

Correct: A) TSH on heel-prick at 3–5 days

Concept: Newborn screening Recall

Why A: TSH on the heel-prick at 3–5 days (after maternal thyroid hormone clears) catches congenital hypothyroidism and prevents cretinism.

Discriminator: At birth TSH is unreliable because of maternal hormone.

B) At birthUnreliable
C) T4 at 1 monthToo late
D) Ultrasound at 6 monthsNo
E) Clinical exam aloneMisses asymptomatics

Trap: Timing of the screen.

Future alert: Congenital hypo screen = TSH heel-prick at 3–5 days.

Q48 — Answer & Breakdown

Correct: A) Endocrine cause (GH deficiency)

Concept: Short-stature differentiation Interpretation

Why A: Low velocity + delayed bone age + normal parents + no illness = endocrine (GH deficiency); familial has normal bone age, constitutional has delayed puberty.

Discriminator: Growth velocity is the key metric.

B) FamilialParents short, bone age normal
C) ConstitutionalDelayed puberty, catch-up later
D) PsychosocialHistory of deprivation
E) MalnutritionLow weight, not this pattern

Trap: Distinguishing causes by velocity/bone age.

Future alert: Low velocity + delayed bone age = endocrine short stature.

Q49 — Answer & Breakdown

Correct: A) Thorough feeding and social history plus a growth-chart plot

Concept: Failure to thrive evaluation Recall

Why A: The first step is a careful intake and psychosocial history with plotting; this separates organic from non-organic.

Discriminator: Do not jump to tests before the history.

B) Endocrine workup firstPremature
C) Admit for IV feedsAfter diagnosis
D) Refer to surgeryNo role
E) ReassureMisses the cause

Trap: Over-investigation before the history.

Future alert: FTT → history + growth plot first.

Q50 — Answer & Breakdown

Correct: A) Atrial septal defect

Concept: Cardiac-exam buzzword Recall

Why A: A widely split S2 that does not vary with inspiration is pathognomonic of ASD (see Q34).

Discriminator: Wide fixed split = ASD.

B) VSDHolosystolic murmur
C) PDAContinuous murmur
D) TOFSingle S2
E) Mitral regurgitationHolosystolic murmur

Trap: Buzzword mapping.

Future alert: Fixed split S2 = ASD.