Clinical Approach to Hematuria

Pediatric Comprehensive Framework

1. Symptom Overview

Understanding the clinical significance and classification of hematuria in children

Hematuria is one of the most common reasons for pediatric nephrology referral, affecting approximately 1-2% of school-age children on screening urinalysis. While the majority of cases are benign and self-limiting, hematuria can also be the presenting sign of significant renal or urological pathology. Gross hematuria occurs in approximately 0.13% of pediatric emergency department visits, whereas asymptomatic microscopic hematuria is detected in 3-4% of children during routine screening. The challenge for clinicians lies in distinguishing benign causes from those requiring urgent intervention.

Definition

Hematuria is defined as the presence of an abnormal quantity of red blood cells (RBCs) in the urine. Microscopic hematuria is defined as ≥5 RBCs per high-power field (HPF) on a centrifuged urine specimen, confirmed on at least 2-3 separate samples over 2-4 weeks. Gross (macroscopic) hematuria is visible blood in the urine, which may appear red, pink, cola-colored, or tea-colored depending on the source and acidity of urine.

Key Epidemiology in Children

  • Prevalence of microscopic hematuria: 3-4% on single screening; 0.5-1% on repeat testing
  • Gross hematuria: 0.13% of pediatric emergency visits
  • Age distribution: Can occur at any age; certain causes peak at specific ages
  • Sex distribution: Overall equal; urinary tract infections more common in girls, while urolithiasis is more common in boys
  • Most common causes: Urinary tract infection, hypercalciuria, and post-infectious glomerulonephritis
  • Benign outcome: Approximately 80% of isolated microscopic hematuria resolves spontaneously

Classification by Duration and Persistence

CategoryDefinitionCommon CausesClinical Significance
TransientSingle episode; resolves on repeat testingVigorous exercise, fever, viral illness, dehydration, minor traumaUsually benign; repeat urinalysis in 2-4 weeks to confirm resolution
PersistentPresent on ≥2-3 specimens over 2-4 weeksHypercalciuria, thin basement membrane disease, IgA nephropathy, Alport syndromeWarrants further evaluation; may indicate underlying renal pathology
RecurrentEpisodes of gross hematuria with intervals of normal urineIgA nephropathy (synpharyngitic), nutcracker syndrome, urolithiasisPattern recognition important; triggers may guide diagnosis

Classification by Visibility

Microscopic Hematuria

Definition: ≥5 RBCs/HPF on centrifuged specimen; not visible to naked eye

Detection: Dipstick (heme detection) followed by microscopy confirmation

Key points:

  • Dipstick positive but microscopy negative suggests hemoglobinuria or myoglobinuria
  • Must be confirmed on multiple samples before extensive workup
  • Isolated microscopic hematuria (without proteinuria) often benign

Gross (Macroscopic) Hematuria

Definition: Visible blood in urine; typically requires >1 mL blood per liter of urine

Appearance clues:

  • Bright red/pink: Suggests lower urinary tract origin (bladder, urethra)
  • Cola/tea/brown: Suggests glomerular origin (dysmorphic RBCs, longer transit time)
  • Blood clots: Non-glomerular origin (glomerular blood does not clot)

Always requires prompt evaluation

Classification by Anatomical Origin

FeatureGlomerular OriginNon-Glomerular (Extraglomerular) Origin
Urine colorCola, tea, or brown (“smoky”)Bright red or pink
Blood clotsAbsent (urokinase in tubules lyses clots)May be present
RBC morphologyDysmorphic RBCs, acanthocytes (>5%)Isomorphic (normal) RBCs
RBC castsPresent (pathognomonic)Absent
ProteinuriaOften present (>2+ or >100 mg/dL)Usually absent or minimal
Associated symptomsEdema, hypertension, oliguriaDysuria, frequency, flank pain, trauma
Common causesPost-infectious glomerulonephritis, IgA nephropathy, Alport syndrome, lupus nephritisUrinary tract infection, hypercalciuria, urolithiasis, trauma, tumor

Classification by Associated Findings

PatternDescriptionLikely EtiologyUrgency
Isolated hematuriaHematuria without proteinuria, normal blood pressure, normal renal functionHypercalciuria, thin basement membrane disease, mild IgA nephropathy, nutcracker syndromeLow; can be monitored
Hematuria with proteinuriaCombined presence suggests glomerular diseaseGlomerulonephritis, Alport syndrome, focal segmental glomerulosclerosisModerate to high; requires nephrology referral
Hematuria with dysuriaSuggests lower urinary tract inflammationUrinary tract infection, urethritis, hemorrhagic cystitisModerate; treat underlying cause
Nephritic syndromeHematuria + proteinuria + edema + hypertension + oliguriaAcute glomerulonephritis (post-streptococcal, IgA, membranoproliferative)High; urgent evaluation needed

Age-Specific Considerations

Age GroupCommon Causes to ConsiderSpecial Considerations
NeonateUric acid crystals (pseudo-hematuria), renal vein thrombosis, congenital anomalies (CAKUT), polycystic kidney diseaseBrick-red staining in diaper is usually uric acid crystals, not blood; true hematuria is rare and concerning
Infant (1-12 months)Urinary tract infection, Wilms tumor (rare), metabolic disordersAbdominal mass must raise concern for Wilms tumor; UTI may present with fever only
Toddler and Preschool (1-5 years)Urinary tract infection, hypercalciuria, post-infectious glomerulonephritis, Wilms tumor, traumaPeak age for post-streptococcal glomerulonephritis and Wilms tumor; consider non-accidental trauma
School-age (6-12 years)Post-infectious glomerulonephritis, IgA nephropathy, hypercalciuria, urolithiasis, exercise-inducedMost common age for post-streptococcal glomerulonephritis; recurrent gross hematuria with upper respiratory infection suggests IgA nephropathy
Adolescent (13-18 years)IgA nephropathy, urolithiasis, exercise-induced, thin basement membrane disease, nutcracker syndrome, menstrual contamination (females)Consider adult-type causes; in females, ensure sample is not contaminated by menstrual blood

Key Concept: The “Big Five” Causes of Pediatric Hematuria

While the differential diagnosis is broad, five conditions account for the majority of pediatric hematuria:

  1. Urinary tract infection — most common cause overall
  2. Hypercalciuria — most common cause of isolated microscopic hematuria
  3. Post-infectious glomerulonephritis — most common glomerular cause
  4. IgA nephropathy — most common cause of recurrent gross hematuria
  5. Thin basement membrane disease — common familial cause of benign hematuria

Clinical Pearl: Pseudo-Hematuria

Not all red urine is hematuria! Pseudo-hematuria refers to red or brown urine discoloration without true red blood cells. Causes include:

  • Foods: Beets, blackberries, rhubarb, food dyes
  • Medications: Rifampin, phenazopyridine, nitrofurantoin, metronidazole, chloroquine
  • Hemoglobinuria: Hemolysis (dipstick positive, microscopy negative for RBCs)
  • Myoglobinuria: Rhabdomyolysis (dipstick positive, microscopy negative for RBCs)
  • Porphyria: Rare; urine darkens on standing
  • Urate crystals: “Brick dust” in neonatal diapers — normal finding

Always confirm dipstick-positive hematuria with urine microscopy!

2. Pathophysiology and Mechanisms

Understanding why and how blood enters the urine in children

Understanding the pathophysiology of hematuria requires knowledge of the glomerular filtration barrier and the urinary tract anatomy. Under normal conditions, red blood cells (RBCs) do not pass into the urine because the glomerular filtration barrier excludes cells based on size and charge. When hematuria occurs, it indicates disruption of this barrier or damage to the urinary tract epithelium at any level from the glomerulus to the urethral meatus.

Normal Glomerular Filtration Barrier

LayerStructureFunctionClinical Relevance
Fenestrated endotheliumCapillary endothelial cells with 70-100 nm poresSize barrier; allows passage of plasma but not cellsEndothelial injury (hemolytic uremic syndrome, vasculitis) causes hematuria
Glomerular basement membrane (GBM)Type IV collagen, laminin, proteoglycans; 300-350 nm thickSize and charge barrier; negative charge repels albuminGBM defects (Alport syndrome, thin basement membrane disease) cause hematuria
PodocytesEpithelial cells with foot processes and slit diaphragms (25-60 nm)Final size-selective barrierPodocyte injury causes proteinuria and may accompany hematuria

Key Concept: Size Matters

Red blood cells have a diameter of approximately 7-8 micrometers (7,000-8,000 nm), which is far larger than the pores in the glomerular filtration barrier. For RBCs to enter the urine, there must be structural disruption of the filtration barrier or damage to the urinary tract epithelium.

Mechanisms of Glomerular Hematuria

MechanismDescriptionConditionsPathological Features
Immune-mediated glomerular injuryImmune complex deposition or anti-GBM antibodies cause inflammation and GBM disruptionPost-infectious glomerulonephritis, IgA nephropathy, lupus nephritis, anti-GBM diseaseComplement activation, inflammatory cell infiltration, crescent formation in severe cases
Inherited GBM abnormalitiesStructural defects in type IV collagen weaken the GBMAlport syndrome (COL4A3/A4/A5 mutations), thin basement membrane diseaseThin or split GBM; progressive thickening and lamellation in Alport syndrome
Endothelial injuryDamage to glomerular capillary endotheliumHemolytic uremic syndrome, thrombotic thrombocytopenic purpura, vasculitisMicroangiopathic changes, fibrin thrombi, endothelial swelling
Mesangial proliferationExpansion of mesangial matrix and cells disrupts capillary architectureIgA nephropathy, membranoproliferative glomerulonephritisMesangial hypercellularity, matrix expansion, immune deposits

Why Are Glomerular RBCs Dysmorphic?

RBCs that pass through a damaged glomerular basement membrane become mechanically distorted as they squeeze through irregular gaps. They are further damaged by osmotic stress as they travel through tubules with varying tonicity. This produces characteristic dysmorphic shapes including acanthocytes (ring-shaped cells with membrane blebs), which are highly specific for glomerular origin when present in >5% of RBCs.

Mechanisms of Non-Glomerular Hematuria

MechanismDescriptionConditionsKey Features
Infection and inflammationMucosal inflammation and epithelial damage from pathogens or irritantsBacterial urinary tract infection, viral hemorrhagic cystitis (adenovirus, BK virus), schistosomiasisPyuria, bacteriuria, dysuria; adenovirus causes severe hemorrhagic cystitis in immunocompromised
Crystal-induced injuryCrystals damage urothelium and cause microtraumaHypercalciuria, hyperuricosuria, cystinuria, urolithiasisCrystals may be visible on microscopy; often associated with renal colic if stones present
Mechanical traumaDirect injury to urinary tract structuresBlunt or penetrating trauma, catheterization, vigorous exercise, sexual abuseHistory is key; consider non-accidental injury in young children with unexplained hematuria
Vascular abnormalitiesAbnormal blood vessels or venous congestionNutcracker syndrome (left renal vein compression), arteriovenous malformations, renal vein thrombosisNutcracker syndrome causes recurrent gross hematuria, often positional or after exercise
NeoplasmTumor invasion or erosion into urinary tractWilms tumor, rhabdomyosarcoma, renal cell carcinoma (rare in children)Abdominal mass, weight loss; Wilms tumor is most common renal malignancy in children
Structural anomaliesCongenital abnormalities predispose to infection, obstruction, or traumaPosterior urethral valves, ureteropelvic junction obstruction, polycystic kidney diseaseMay present with recurrent UTIs or incidental hematuria; often detected on prenatal ultrasound

Mechanisms by Specific Condition

ConditionPathophysiological MechanismWhy It Causes HematuriaCharacteristic Features
Post-streptococcal glomerulonephritisImmune complex deposition following Group A streptococcal infection (pharyngitis or impetigo)Complement activation causes glomerular inflammation and GBM damage; RBCs leak through inflamed capillariesLatent period 1-2 weeks (pharyngitis) or 3-6 weeks (impetigo); low C3, normal C4; self-limited in children
IgA nephropathyMesangial deposition of galactose-deficient IgA1 immune complexesMesangial proliferation and inflammation disrupt glomerular architectureSynpharyngitic hematuria (gross hematuria within 1-2 days of upper respiratory infection); most common glomerulonephritis worldwide
Alport syndromeMutations in COL4A3, COL4A4, or COL4A5 genes encoding type IV collagen α chainsStructurally abnormal GBM becomes thin, then progressively thickened and lamellated (“basket-weave” on electron microscopy)X-linked (80%), autosomal recessive, or autosomal dominant; associated with sensorineural hearing loss and ocular abnormalities
Thin basement membrane diseaseHeterozygous mutations in COL4A3 or COL4A4 causing uniformly thin GBMThin but structurally intact GBM allows some RBC passageBenign familial hematuria; isolated microscopic hematuria; excellent prognosis; may be carrier state for autosomal recessive Alport
HypercalciuriaElevated urinary calcium excretion (>4 mg/kg/day) from absorptive, renal, or resorptive mechanismsCalcium crystals cause microtrauma to tubular epithelium and urotheliumMost common metabolic cause of pediatric hematuria; often familial; may progress to nephrolithiasis
Hemolytic uremic syndromeShiga toxin-producing Escherichia coli (STEC) damages endothelial cells; complement dysregulation in atypical formsEndothelial injury causes microangiopathic hemolysis and glomerular thrombosisTriad: microangiopathic hemolytic anemia, thrombocytopenia, acute kidney injury; bloody diarrhea prodrome in typical form
Nutcracker syndromeLeft renal vein compression between aorta and superior mesenteric arteryRenal venous hypertension causes rupture of thin-walled veins into collecting systemOrthostatic or exercise-induced gross hematuria; left flank pain; more common in thin individuals
Sickle cell trait/diseaseSickling of RBCs in hypertonic, hypoxic, acidic medullary environmentMicrovascular occlusion causes papillary necrosis and mucosal ischemiaPainless gross hematuria, often recurrent; papillary necrosis; renal medullary carcinoma (rare)

Developmental Considerations in Pediatric Hematuria

Immature Nephrons

Neonates and young infants have lower glomerular filtration rates and immature tubular function. The GBM continues to mature during the first months of life, which may explain why some forms of hereditary nephritis (like Alport syndrome) do not manifest until later childhood.

Immunological Development

Post-infectious glomerulonephritis is rare before age 2 because the immune system is still developing the capacity to form nephritogenic immune complexes. IgA nephropathy also typically presents after age 5-10 when mucosal IgA responses mature.

The Formation of RBC Casts

Red blood cell casts are pathognomonic of glomerular bleeding and form when RBCs become trapped in Tamm-Horsfall protein (uromodulin) secreted by the thick ascending limb of the loop of Henle. The gel-like matrix of Tamm-Horsfall protein molds around the RBCs in the tubular lumen, creating cylindrical structures that retain the shape of the tubule. The presence of RBC casts definitively localizes bleeding to the glomerulus and indicates significant glomerular pathology.

Clinical Pearl: The Timing Clue in IgA Nephropathy vs Post-Infectious Glomerulonephritis

The relationship between upper respiratory infection and gross hematuria helps distinguish these two conditions:

  • IgA nephropathy: “Synpharyngitic” — gross hematuria occurs within 1-2 days of the onset of upper respiratory infection (simultaneous with the mucosal immune response)
  • Post-streptococcal glomerulonephritis: “Latent period” — gross hematuria occurs 1-2 weeks after pharyngitis or 3-6 weeks after skin infection (time required to develop nephritogenic immune complexes)

This timing distinction is a high-yield clinical pearl for differential diagnosis!

Complications of Hematuria

ComplicationMechanismClinical FeaturesManagement Considerations
Clot retentionBlood clots obstruct bladder outflow or uretersUrinary retention, suprapubic pain, worsening hematuriaBladder irrigation, catheterization; rare in children unless severe bleeding
AnemiaChronic blood loss exceeds marrow productionPallor, fatigue, tachycardia; usually only with prolonged gross hematuriaMonitor hemoglobin; iron supplementation; address underlying cause
AnxietyVisible blood in urine is alarming to children and familiesFear, repeated emergency visits, excessive testingEducation and reassurance; explain that many causes are benign

Summary: Key Pathophysiological Principles

  • Glomerular hematuria results from disruption of the filtration barrier — dysmorphic RBCs and RBC casts are hallmarks
  • Non-glomerular hematuria results from injury anywhere along the urinary tract — isomorphic RBCs without casts
  • Proteinuria accompanies glomerular disease because podocyte injury often coexists with GBM damage
  • Clots indicate non-glomerular origin because urokinase in the renal tubules lyses clots from glomerular bleeding
  • Understanding the mechanism guides investigation — glomerular causes require serological workup; non-glomerular causes require imaging

3. History Taking

A comprehensive approach to eliciting the hematuria history in children

Red Flags — Require Urgent Evaluation

  • Gross hematuria with edema and hypertension — acute glomerulonephritis, nephritic syndrome
  • Oliguria or anuria — acute kidney injury, rapidly progressive glomerulonephritis
  • Palpable abdominal or flank mass — Wilms tumor, polycystic kidney disease, hydronephrosis
  • Recent bloody diarrhea with pallor — hemolytic uremic syndrome
  • Severe colicky flank pain — obstructing urolithiasis, ureteropelvic junction obstruction
  • Significant trauma history — renal laceration, bladder rupture
  • Unexplained bruising or petechiae — coagulopathy, leukemia, hemolytic uremic syndrome
  • Hearing loss with hematuria — Alport syndrome
  • Weight loss or night sweats — malignancy
  • Neonatal hematuria — renal vein thrombosis, congenital anomalies, coagulopathy
  • Signs of non-accidental injury — unexplained hematuria with other concerning findings

Systematic History: The “BLOOD” Approach

Use the mnemonic “BLOOD” to ensure comprehensive history taking for pediatric hematuria:

  • BBleeding characteristics: Color (red, pink, cola, tea), timing (initial, terminal, throughout stream), clots present? Duration and frequency of episodes?
  • LLocation clues and Lower urinary tract symptoms: Dysuria, frequency, urgency, incontinence, suprapubic pain, flank pain? Where does it hurt?
  • OOther symptoms and Onset context: Fever, rash, joint pain, edema, recent illness (pharyngitis, impetigo, gastroenteritis), trauma, exercise? What was happening when it started?
  • OOrigins and family history: Family history of hematuria, kidney disease, dialysis, hearing loss, sickle cell disease, bleeding disorders, kidney stones?
  • DDevelopment, Drugs, and Diet: Growth and development, medications (NSAIDs, anticoagulants, cyclophosphamide), recent foods (beets, berries), calcium and fluid intake?

Characterizing the Hematuria

QuestionWhat to AskClinical Significance
Color“What color was the urine? Bright red, pink, cola-colored, or tea-colored?”Bright red/pink suggests lower tract; cola/tea suggests glomerular origin
Timing in stream“Is the blood at the beginning, end, or throughout urination?”Initial = urethral; terminal = bladder neck/prostate; throughout = bladder or upper tract
Clots“Did you see any blood clots in the urine?”Clots indicate non-glomerular origin (glomerular blood does not clot)
Duration“How long has this been happening? Is this the first time?”Single episode may be transient; persistent or recurrent warrants investigation
Triggers“Does anything make it worse? Exercise, illness, certain activities?”Exercise-induced suggests nutcracker syndrome or benign causes; illness-associated suggests IgA nephropathy or post-infectious glomerulonephritis

Targeted Questions by Suspected Cause

Suspected CauseKey FeaturesAsk This Question
Urinary tract infectionDysuria, frequency, urgency, fever, foul-smelling urine“Does it burn or hurt when urinating? Does your child need to go more often? Any fever or smelly urine?”
Post-streptococcal glomerulonephritisRecent pharyngitis or impetigo 1-6 weeks prior, edema, decreased urine output“Did your child have a sore throat or skin infection in the past few weeks? Any swelling around the eyes or legs? Making less urine than usual?”
IgA nephropathyGross hematuria within 1-2 days of upper respiratory infection“Did the bloody urine start right when your child got sick with a cold? Does this happen every time they get a cold?”
HypercalciuriaFamily history of kidney stones, adequate fluid intake, no other symptoms“Does anyone in the family have kidney stones? How much does your child drink? Any abdominal pain?”
Alport syndromeFamily history of kidney failure, hearing loss, eye problems“Does anyone in the family have kidney problems, need dialysis, or have hearing loss? Any concerns about your child’s hearing?”
Thin basement membrane diseaseFamily history of benign hematuria, no proteinuria, no hearing loss“Does anyone else in the family have blood in their urine but no kidney problems?”
Hemolytic uremic syndromeRecent bloody diarrhea, pallor, decreased urine output, bruising“Did your child have diarrhea recently, especially bloody diarrhea? Does your child look pale? Any unusual bruising?”
UrolithiasisSevere colicky pain, nausea, vomiting, family history of stones“Is there severe pain that comes and goes? Does the pain go to the groin? Any nausea or vomiting? Family history of kidney stones?”
Nutcracker syndromeOrthostatic or exercise-induced hematuria, thin body habitus, left flank pain“Does the blood appear after exercise or standing for a long time? Is your child very thin? Any left-sided flank pain?”
TraumaHistory of injury, sports, bicycle handlebar injury“Has your child had any falls, injuries, or trauma to the belly or back? Any sports injuries?”
Wilms tumorAbdominal mass, abdominal pain, weight loss, fever“Have you noticed any swelling or lump in the belly? Any unexplained weight loss or fevers?”
CoagulopathyEasy bruising, prolonged bleeding, family history of bleeding disorders“Does your child bruise easily? Do cuts take a long time to stop bleeding? Any family history of bleeding problems?”

Pediatric-Specific History Components

Birth and Perinatal History

ElementQuestions to AskRelevance to Hematuria
Prenatal ultrasound“Were there any abnormalities on prenatal ultrasound? Any kidney problems seen before birth?”Congenital anomalies of kidney and urinary tract (CAKUT), hydronephrosis, polycystic kidneys may have been detected prenatally
Gestational age and birth weight“Was your child born early? What was the birth weight?”Prematurity and low birth weight associated with reduced nephron number and increased risk of kidney disease
Neonatal course“Was your baby in the NICU? Any umbilical lines placed? Any blood clots?”Umbilical artery catheters are a risk factor for renal artery thrombosis; umbilical vein catheters for renal vein thrombosis
Neonatal jaundice“Did your baby have jaundice? Did they need phototherapy or exchange transfusion?”Severe hemolysis may indicate underlying hemolytic disorder (e.g., G6PD deficiency) that could cause hemoglobinuria

Growth and Developmental History

  • Growth trajectory: Poor growth may indicate chronic kidney disease or systemic illness
  • Developmental milestones: Generally not directly related but important for comprehensive assessment
  • Hearing milestones: Particularly important — hearing loss suggests Alport syndrome
  • Vision: Eye abnormalities (anterior lenticonus, retinal flecks) associated with Alport syndrome

Immunization and Infection History

  • Recent infections: Pharyngitis, impetigo, upper respiratory infection, gastroenteritis (diarrhea)
  • Immunization status: Generally up to date; pertussis-like cough can cause exercise-induced hematuria from severe coughing
  • Recurrent urinary tract infections: May indicate structural anomaly predisposing to both infection and hematuria

Medication and Dietary History

Medications That Cause Hematuria

  • NSAIDs (ibuprofen, naproxen) — interstitial nephritis, papillary necrosis
  • Cyclophosphamide — hemorrhagic cystitis
  • Anticoagulants — unmask underlying lesions
  • Penicillins, cephalosporins — allergic interstitial nephritis
  • Aminoglycosides — acute tubular necrosis
  • Rifampin — causes red-orange urine (pseudo-hematuria)
  • Phenazopyridine — causes orange urine (pseudo-hematuria)

Dietary Causes of Red Urine (Pseudo-Hematuria)

  • Beets (beeturia) — red pigment in genetically susceptible individuals
  • Blackberries, rhubarb — natural pigments
  • Food dyes — red-colored foods and drinks
  • Fava beans — can trigger hemolysis in G6PD deficiency (hemoglobinuria)

Dietary Factors Relevant to Stone Disease

  • Low fluid intake — concentrated urine promotes crystallization
  • High sodium diet — increases urinary calcium excretion
  • Excessive calcium or vitamin D supplements

Family History

Critical Family History Questions

Family history is essential in pediatric hematuria because many causes are hereditary:

  • Hematuria in family members: Thin basement membrane disease, IgA nephropathy, Alport syndrome
  • Kidney failure or dialysis: Alport syndrome, polycystic kidney disease, focal segmental glomerulosclerosis
  • Kidney transplant: Inherited kidney disease
  • Hearing loss: Alport syndrome (X-linked inheritance — ask about maternal male relatives)
  • Kidney stones: Hypercalciuria, cystinuria, hyperoxaluria
  • Sickle cell disease or trait: Papillary necrosis, sickling nephropathy
  • Bleeding disorders: Hemophilia, von Willebrand disease
  • Autoimmune diseases: Lupus, vasculitis
  • Polycystic kidney disease: Autosomal dominant or recessive forms

Social History

FactorQuestionsRelevance
Sports and exercise“What sports does your child play? Any recent strenuous exercise?”Exercise-induced hematuria; contact sports may cause trauma; long-distance running associated with transient hematuria
Travel history“Any recent travel, especially to Africa, Middle East, or Southeast Asia?”Schistosomiasis (Schistosoma haematobium) causes hematuria in endemic areas
School and activities“How is your child doing in school? Any missed days due to illness?”Chronic illness may affect school attendance; also assess impact of hematuria on quality of life
Menstrual history (adolescent females)“Has your daughter started her period? When was her last period?”Menstrual contamination is a common cause of apparent hematuria in adolescent girls
Sexual activity (adolescents)Ask privately: “Are you sexually active?”Sexually transmitted infections (urethritis, cervicitis) can cause hematuria; trauma

Clinical Pearl: The Collateral History

In pediatrics, always obtain history from both the child and the caregiver. Older children and adolescents should also be interviewed privately to discuss sensitive topics. Young children may not be able to describe symptoms like dysuria but may show behavioral clues (crying during urination, holding urine, toilet avoidance). Ask caregivers: “Does your child seem uncomfortable or cry when they urinate?”

4. Physical Examination

A systematic head-to-toe approach for pediatric hematuria

Systematic Framework: Use the “Head to Extremities” approach for complete examination of children presenting with hematuria. Pay particular attention to signs of glomerulonephritis (edema, hypertension), systemic disease, and abdominal masses.

Growth Parameters

Always Plot Growth!

In pediatrics, growth parameters are vital signs. Poor growth may indicate chronic kidney disease or other systemic illness.

  • Weight: Plot on age-appropriate growth chart; acute weight gain suggests fluid retention (nephritic syndrome)
  • Height: Short stature may indicate chronic kidney disease
  • Head circumference: In infants and young children
  • Body mass index: Thin body habitus associated with nutcracker syndrome

Vital Signs by Age

AgeHeart Rate (bpm)Respiratory Rate (/min)Systolic BP (mmHg)Diastolic BP (mmHg)
Neonate (0-28 days)100-16030-6060-9020-60
Infant (1-12 months)100-15025-4080-10055-65
Toddler (1-3 years)90-14020-3090-10555-70
Preschool (3-5 years)80-12020-2595-11060-75
School-age (6-12 years)70-11018-25100-12060-75
Adolescent (13-18 years)60-10012-20110-13065-80

Blood Pressure is Critical!

Hypertension is a key finding in glomerulonephritis. Use an appropriately sized cuff (bladder width 40% of arm circumference). Compare to age-, sex-, and height-specific percentiles. Blood pressure >95th percentile is elevated; >95th percentile + 12 mmHg or ≥140/90 (whichever is lower) is stage 2 hypertension requiring urgent attention.

General Inspection

  • General appearance: Well or ill-appearing? Active or lethargic? Signs of acute distress?
  • Nutritional status: Well-nourished or malnourished? Cachexia suggests chronic disease or malignancy
  • Pallor: Suggests anemia — may indicate chronic blood loss, hemolysis (hemolytic uremic syndrome), or chronic kidney disease
  • Edema: Periorbital edema (early sign, especially in morning), pedal edema, scrotal/labial edema, anasarca — suggests nephritic or nephrotic syndrome
  • Skin: Rash (Henoch-Schönlein purpura, lupus), petechiae or purpura (coagulopathy, hemolytic uremic syndrome), impetigo (post-streptococcal glomerulonephritis)
  • Dysmorphic features: Syndromes associated with renal anomalies (VACTERL, CHARGE, branchio-oto-renal syndrome)

Head, Eyes, Ears, Nose, and Throat Examination

Eyes

  • Periorbital edema: Classic early sign of glomerulonephritis; most prominent in morning
  • Scleral icterus: Suggests hemolysis
  • Anterior lenticonus: “Oil droplet” sign on slit lamp — Alport syndrome
  • Retinal flecks: Dot-and-fleck retinopathy — Alport syndrome
  • Conjunctival pallor: Anemia

Ears, Nose, and Throat

  • Hearing assessment: Sensorineural hearing loss — Alport syndrome (typically high-frequency loss, may require audiometry)
  • Pharyngitis: Exudative tonsillitis, enlarged tonsils — recent streptococcal infection (post-streptococcal glomerulonephritis)
  • Ear pits or tags: Branchio-oto-renal syndrome (associated with renal anomalies)
  • Nasal discharge: Upper respiratory infection — trigger for IgA nephropathy

Cardiovascular Examination

  • Heart rate and rhythm: Tachycardia may indicate anemia, pain, fever, or hypovolemia
  • Blood pressure: Check in all four limbs if concerned about coarctation; repeat elevated readings
  • Heart sounds: Flow murmur may be present with anemia; gallop rhythm suggests volume overload
  • Jugular venous pressure: Elevated in fluid overload (difficult to assess in young children)
  • Signs of heart failure: Hepatomegaly, peripheral edema, pulmonary crackles — may occur with severe hypertension or volume overload in glomerulonephritis

Abdominal Examination

Abdominal Mass in a Child = Urgent Evaluation

A palpable abdominal mass in a child with hematuria requires urgent imaging to rule out Wilms tumor, neuroblastoma, or other malignancy. Do not repeatedly palpate a suspected Wilms tumor — this may cause rupture.

Inspection

  • Abdominal distension: Ascites (nephrotic syndrome), mass effect, or organomegaly
  • Visible masses: Large renal masses may be visible in thin children
  • Surgical scars: Previous renal or urological surgery
  • Bruising: Trauma (including non-accidental injury)

Palpation

  • Kidneys: Normally palpable in neonates and thin children; enlarged kidneys suggest polycystic kidney disease, hydronephrosis, or tumor
  • Bladder: Palpable above pubic symphysis if distended (retention, neurogenic bladder)
  • Flank tenderness: Costovertebral angle tenderness suggests pyelonephritis or urolithiasis
  • Suprapubic tenderness: Cystitis, bladder pathology
  • Hepatomegaly: Congestive heart failure, polycystic liver disease (with autosomal dominant polycystic kidney disease)
  • Splenomegaly: Hemolytic anemia, portal hypertension, systemic disease

Percussion

  • Costovertebral angle tenderness: Tap gently over CVA — tenderness suggests pyelonephritis or renal pathology
  • Shifting dullness: Ascites in nephrotic syndrome

Genitourinary Examination

FindingDescriptionAssociated Conditions
Meatal abnormalities (males)Hypospadias, meatal stenosis, blood at urethral meatusMeatal stenosis can cause terminal hematuria; blood at meatus suggests urethral trauma
PhimosisTight foreskin, ballooning during urinationMay predispose to urinary tract infections
Testicular examinationMasses, tenderness, positionTesticular tumor can rarely metastasize causing hematuria; epididymitis
Scrotal edemaBilateral scrotal swellingNephrotic syndrome, Henoch-Schönlein purpura
Labial abnormalities (females)Labial adhesions, vaginal discharge, irritationLabial adhesions may cause urinary symptoms; vulvovaginitis can cause dysuria and contaminate urine sample
Vaginal bleedingEnsure hematuria is not menstrual or vaginal in originMenstrual contamination is common cause of apparent hematuria in adolescent females

Examination Tip: Genital Examination in Children

Always explain the examination to the child and caregiver, obtain consent, and have a chaperone present. In young children, the genital examination can often be performed as part of the diaper change routine. Look for signs of trauma, which may indicate non-accidental injury. If sexual abuse is suspected, refer to appropriate specialists — avoid repeated examinations.

Skin Examination

FindingDescriptionAssociated Conditions
Palpable purpuraRaised, non-blanching purple lesions, typically on lower extremities and buttocksIgA vasculitis (Henoch-Schönlein purpura) — hematuria indicates renal involvement
Malar rashButterfly-shaped erythematous rash over cheeks and noseSystemic lupus erythematosus — lupus nephritis causes hematuria
ImpetigoHoney-crusted lesions, typically on face or extremitiesStreptococcal skin infection — can precede post-streptococcal glomerulonephritis
Petechiae and ecchymosesPinpoint non-blanching spots or larger bruisesHemolytic uremic syndrome (thrombocytopenia), coagulopathy, leukemia, non-accidental injury
Café-au-lait spotsLight brown maculesNeurofibromatosis type 1 — associated with renal artery stenosis and rare renal tumors
Ash-leaf spotsHypopigmented macules (use Wood’s lamp)Tuberous sclerosis — associated with renal angiomyolipomas (can bleed), cysts
AngiokeratomasDark red papules in “bathing suit” distributionFabry disease — X-linked lysosomal storage disorder with progressive kidney disease

Musculoskeletal Examination

  • Joint swelling and tenderness: Arthritis or arthralgia — Henoch-Schönlein purpura (typically ankles and knees), lupus, post-streptococcal reactive arthritis
  • Bone tenderness: Leukemia (bone marrow infiltration)
  • Muscle tenderness: Rhabdomyolysis (causes myoglobinuria, not true hematuria — but dipstick positive)

Neurological Examination

  • Mental status: Encephalopathy may occur with severe hypertension (hypertensive emergency) or uremia
  • Focal deficits: Stroke in setting of severe hypertension or hemolytic uremic syndrome
  • Fundoscopy: Papilledema, hypertensive retinopathy, retinal hemorrhages

Expected Findings by Etiology

ConditionGeneralVital SignsKey Examination Findings
Urinary tract infectionMay appear well or illFever common; normal blood pressureSuprapubic tenderness; CVA tenderness if pyelonephritis; may be normal
Post-streptococcal glomerulonephritisMay be edematousHypertension common (60-80%)Periorbital and pedal edema; pharyngitis or impetigo healing; may have signs of fluid overload
IgA nephropathyUsually well-appearingUsually normalOften normal examination; may have concurrent upper respiratory infection
Henoch-Schönlein purpuraMay have joint painUsually normal; may have elevated BPPalpable purpura on legs and buttocks; arthritis (ankles, knees); abdominal tenderness; scrotal swelling
Hemolytic uremic syndromeIll-appearing, paleMay have hypertensionPallor; petechiae; edema; abdominal tenderness; may have neurological changes
Alport syndromeUsually wellMay develop hypertension over timeSensorineural hearing loss; anterior lenticonus on eye exam; usually otherwise normal
HypercalciuriaWell-appearingNormalTypically completely normal examination
UrolithiasisIn pain, restlessTachycardia; normal BPCVA tenderness; abdominal tenderness; child cannot find comfortable position
Wilms tumorMay have weight lossMay have hypertensionPalpable abdominal mass (smooth, firm, does not cross midline)
Polycystic kidney diseaseUsually wellMay have hypertensionBilateral flank masses; hepatomegaly possible (ADPKD)
Lupus nephritisMay have fatigue, weight lossMay have hypertensionMalar rash; oral ulcers; arthritis; alopecia; edema

Important Teaching Point: Normal Examination is Common!

Many causes of pediatric hematuria present with a completely normal physical examination. This includes:

  • Hypercalciuria (most common cause of isolated microscopic hematuria)
  • Thin basement membrane disease
  • Early or mild IgA nephropathy
  • Nutcracker syndrome
  • Exercise-induced hematuria
  • Transient/benign hematuria

A normal examination does not exclude significant pathology. The history and urinalysis findings guide the differential diagnosis even when examination is unremarkable.

Physical Examination Summary Checklist

Key Components of the Hematuria Examination:

  1. Growth parameters — Plot weight, height, and BMI
  2. Blood pressure — Use correct cuff size; compare to age/height percentiles
  3. Edema assessment — Periorbital, pedal, scrotal/labial, sacral
  4. Skin examination — Rash (purpura, malar), pallor, bruising, impetigo
  5. Eye and ear examination — Hearing, eye abnormalities (Alport)
  6. Abdominal examination — Masses, organomegaly, tenderness
  7. Genitourinary examination — External genitalia, meatus
  8. Joint examination — Swelling, tenderness (vasculitis)

5. Differential Diagnosis

Systematic approach organized by probability, duration, and clinical features

Approach to Pediatric Hematuria: The differential diagnosis is broad, but a systematic approach based on clinical presentation helps narrow the possibilities efficiently.

  1. Step 1: Confirm true hematuria (rule out pseudo-hematuria and contamination)
  2. Step 2: Determine if microscopic or gross hematuria
  3. Step 3: Classify as glomerular or non-glomerular based on urine findings
  4. Step 4: Look for associated features (proteinuria, hypertension, edema, symptoms)
  5. Step 5: Consider age-specific causes

Gross Hematuria — Differential by Probability

ProbabilityConditionKey FeaturesRed Flags
COMMON
(~70%)
Urinary tract infectionDysuria, frequency, urgency, fever; pyuria on urinalysisHigh fever, flank pain (pyelonephritis)
Post-infectious glomerulonephritisCola-colored urine 1-6 weeks after streptococcal infection; edema, hypertensionSevere hypertension, oliguria, pulmonary edema
IgA nephropathyGross hematuria within 1-2 days of upper respiratory infection; recurrent episodesPersistent proteinuria, hypertension, renal insufficiency
TraumaHistory of injury; may have flank pain or bruisingHemodynamic instability, expanding flank mass
UrolithiasisSevere colicky flank pain radiating to groin; nausea, vomitingObstruction with infection (pyonephrosis), anuria
LESS COMMON
(~20%)
IgA vasculitis (Henoch-Schönlein purpura)Palpable purpura on legs/buttocks, arthritis, abdominal painNephritic syndrome, rapidly progressive glomerulonephritis
Hemorrhagic cystitis (viral)Adenovirus or BK virus; immunocompromised children; severe dysuriaClot retention, severe anemia
Nutcracker syndromeThin body habitus; orthostatic or exercise-induced; left flank painSevere anemia from chronic blood loss
CoagulopathyEasy bruising, prolonged bleeding; family historyBleeding from multiple sites
UNCOMMON BUT SERIOUS
(~10%)
Hemolytic uremic syndromeBloody diarrhea prodrome; pallor, oliguria, petechiaeAnuria, seizures, severe anemia, thrombocytopenia
Wilms tumorAbdominal mass; may have pain, fever, weight lossRapid abdominal enlargement, hypertension
Alport syndromeFamily history of kidney failure and hearing loss; persistent hematuriaProgressive hearing loss, proteinuria, renal insufficiency
Rapidly progressive glomerulonephritisAcute kidney injury with active urine sediment; may have systemic symptomsRapid rise in creatinine, oliguria, pulmonary hemorrhage

Microscopic Hematuria — Differential by Probability

Key Point: Isolated vs. Non-Isolated Microscopic Hematuria

Isolated microscopic hematuria = hematuria without proteinuria, hypertension, or renal dysfunction. This has a much more benign differential than hematuria with associated findings.

ProbabilityConditionApproximate FrequencyKey Distinguishing Features
COMMONHypercalciuria30-35% of isolated microscopic hematuriaFamily history of kidney stones; normal examination; urine calcium/creatinine ratio elevated
Thin basement membrane disease20-25%Family history of benign hematuria; isolated hematuria; no hearing loss; excellent prognosis
Urinary tract infection15-20%May have dysuria, frequency; pyuria and bacteriuria on urinalysis
Transient/benign hematuria10-15%Resolves on repeat testing; associated with fever, exercise, or viral illness
LESS COMMONIgA nephropathy5-10%May have episodes of gross hematuria; mild proteinuria may develop
Alport syndrome1-2%Family history of kidney failure and hearing loss; progressive course; X-linked most common
Nutcracker syndrome1-2%Left flank pain; orthostatic proteinuria; thin body habitus
Post-infectious glomerulonephritis (resolving)VariableMicroscopic hematuria may persist for 1-2 years after acute episode
UNCOMMONStructural anomalies (CAKUT)<5%May have history of prenatal hydronephrosis; recurrent UTIs
Polycystic kidney disease<2%Family history; enlarged kidneys on examination or imaging
Lupus nephritis<1%Systemic symptoms; rash, arthritis; positive autoantibodies

Glomerular vs. Non-Glomerular: Quick Differentiation

Suggests Glomerular Origin

  • Cola, tea, or brown-colored urine
  • Dysmorphic RBCs on microscopy (>80%)
  • Acanthocytes >5%
  • RBC casts (pathognomonic)
  • Significant proteinuria (>2+ or >100 mg/dL)
  • Edema, hypertension
  • Absence of clots

Think: Glomerulonephritis, IgA nephropathy, Alport syndrome, lupus nephritis

Suggests Non-Glomerular Origin

  • Bright red or pink urine
  • Isomorphic (normal) RBCs on microscopy
  • No RBC casts
  • Minimal or no proteinuria
  • Blood clots present
  • Dysuria, frequency, urgency
  • Flank or suprapubic pain

Think: UTI, urolithiasis, hypercalciuria, trauma, tumor, structural anomaly

Age-Based Differential Approach

Age GroupMost Likely CausesMust Not MissKey Considerations
Neonate
(0-28 days)
Uric acid crystals (pseudo-hematuria), UTI, trauma (birth-related)Renal vein thrombosis, coagulopathy, congenital anomalies (posterior urethral valves, polycystic kidney disease)True hematuria rare in neonates — requires urgent evaluation; check coagulation studies
Infant
(1-12 months)
UTI, structural anomaliesWilms tumor, renal vein thrombosis, child abuseUTI may present with fever only; abdominal mass requires urgent imaging
Toddler
(1-3 years)
UTI, hypercalciuria, post-infectious glomerulonephritis, traumaWilms tumor (peak age 3-4 years), hemolytic uremic syndrome, child abusePost-streptococcal glomerulonephritis becomes more common; HUS typically follows bloody diarrhea
Preschool
(3-5 years)
UTI, hypercalciuria, post-infectious glomerulonephritis, IgA vasculitisWilms tumor, hemolytic uremic syndromePeak age for post-streptococcal glomerulonephritis and Wilms tumor
School-age
(6-12 years)
Hypercalciuria, thin basement membrane disease, IgA nephropathy, UTI, post-infectious glomerulonephritisAlport syndrome, lupus nephritis (especially females approaching puberty)Hereditary causes become more apparent; IgA nephropathy often presents with recurrent gross hematuria
Adolescent
(13-18 years)
IgA nephropathy, hypercalciuria, urolithiasis, UTI, exercise-induced, nutcracker syndromeLupus nephritis, Alport syndrome, malignancy (rare)Consider menstrual contamination in females; exercise-induced hematuria common in athletes; adult-type causes emerge

Anatomical Approach to Hematuria

Glomerular

Post-infectious glomerulonephritis

IgA nephropathy

Alport syndrome

Thin basement membrane disease

Lupus nephritis

IgA vasculitis nephritis

Membranoproliferative glomerulonephritis

Anti-GBM disease (rare in children)

Tubulointerstitial

Acute tubular necrosis

Interstitial nephritis (drug-induced)

Pyelonephritis

Papillary necrosis (sickle cell)

Polycystic kidney disease

Medullary sponge kidney

Vascular

Renal vein thrombosis

Renal artery thrombosis

Nutcracker syndrome

Arteriovenous malformation

Hemolytic uremic syndrome

Vasculitis

Lower Urinary Tract

Urinary tract infection/cystitis

Urolithiasis

Hypercalciuria

Trauma

Hemorrhagic cystitis (viral)

Structural anomalies

Wilms tumor/rhabdomyosarcoma

Foreign body

Drug-Induced Hematuria

Drug or Drug ClassMechanismCharacteristicsManagement
NSAIDs (ibuprofen, naproxen)Acute interstitial nephritis; papillary necrosis with chronic useMay have fever, rash, eosinophilia; often microscopic hematuriaDiscontinue drug; usually reversible
CyclophosphamideAcrolein metabolite causes hemorrhagic cystitisGross hematuria; may be severe with clots; dose-relatedMESNA prophylaxis; hydration; may need bladder irrigation
Penicillins, cephalosporinsAllergic interstitial nephritisFever, rash, eosinophilia, eosinophiluria; usually 1-2 weeks after startingDiscontinue drug; consider steroids if severe
AminoglycosidesAcute tubular necrosisUsually with elevated creatinine; non-oliguric AKIDiscontinue or adjust dose; supportive care
Anticoagulants (warfarin, heparin)Unmasking of underlying urinary tract lesionGross hematuria more likely; INR may or may not be supratherapeuticEvaluate for underlying lesion even if anticoagulation is cause
Valproic acidFanconi syndrome (rare)May have other tubular dysfunctionConsider alternative anticonvulsant

Don’t Forget: Pseudo-Hematuria

Before extensive workup, confirm true hematuria by microscopy. Causes of red/brown urine without RBCs:

  • Hemoglobinuria: Dipstick positive, no RBCs — hemolysis (check haptoglobin, LDH, peripheral smear)
  • Myoglobinuria: Dipstick positive, no RBCs — rhabdomyolysis (check CK, muscle symptoms)
  • Foods: Beets, blackberries, food dyes — dipstick negative
  • Medications: Rifampin (orange-red), phenazopyridine (orange), nitrofurantoin (brown) — dipstick negative
  • Urate crystals: “Brick dust” in neonatal diapers — dipstick negative, normal finding
  • Porphyria: Urine darkens on standing — rare in children

Quick Reference: “If You See This, Think This”

Clinical ClueThink This FirstNext Step
Cola-colored urine + edema + hypertension + recent pharyngitisPost-streptococcal glomerulonephritisCheck C3, C4, ASO, anti-DNase B; monitor BP and fluid status
Gross hematuria within 1-2 days of upper respiratory infection (recurrent)IgA nephropathyCheck renal function, urine protein; consider nephrology referral
Palpable purpura + arthritis + abdominal pain + hematuriaIgA vasculitis (Henoch-Schönlein purpura)Monitor for nephritis; check BP, renal function, urine protein
Bloody diarrhea → pallor + oliguria + petechiaeHemolytic uremic syndromeUrgent CBC, smear, renal function, LDH; avoid antibiotics if STEC suspected
Isolated microscopic hematuria + family history of kidney stonesHypercalciuriaSpot urine calcium/creatinine ratio; 24-hour urine calcium if indicated
Family history of hematuria with good kidney functionThin basement membrane diseaseTest parents’ urine; monitor for proteinuria; usually benign
Family history of kidney failure + hearing lossAlport syndromeAudiometry; ophthalmology exam; consider genetic testing or kidney biopsy
Severe colicky flank pain + nausea/vomitingUrolithiasisRenal ultrasound (first-line in children); CT if inconclusive and high suspicion
Abdominal mass in young childWilms tumorUrgent abdominal ultrasound; do not repeatedly palpate
Thin adolescent + left flank pain + exercise-induced hematuriaNutcracker syndromeDoppler ultrasound of left renal vein; CT or MR angiography if indicated
Hematuria + malar rash + arthritis in adolescent femaleLupus nephritisANA, anti-dsDNA, complement levels; nephrology and rheumatology referral
Neonate with hematuria + flank mass + thrombocytopeniaRenal vein thrombosisDoppler ultrasound; coagulation studies; look for risk factors (dehydration, central lines)

6. Diagnostic Investigations

A stepwise, cost-effective approach guided by clinical suspicion

Guiding Principle: Investigation should be guided by clinical presentation. Not every child with hematuria needs extensive workup. Isolated, asymptomatic microscopic hematuria confirmed on repeat testing warrants basic evaluation, while gross hematuria, hematuria with proteinuria, or hematuria with systemic symptoms requires more comprehensive investigation.

Step 1: Confirm True Hematuria

TestPurposeInterpretationPractical Points
Urine dipstickScreening for hemePositive for blood = presence of hemoglobin (from RBCs, free hemoglobin, or myoglobin)False positives: dilute urine, alkaline urine, semen, oxidizing agents. Must confirm with microscopy.
Urine microscopyConfirm presence of RBCs≥5 RBCs/HPF on centrifuged specimen = microscopic hematuriaFresh specimen essential; examine within 1-2 hours. If dipstick positive but no RBCs = hemoglobinuria or myoglobinuria.
Repeat urinalysis (2-3 times over 2-4 weeks)Confirm persistenceTransient hematuria resolves; persistent hematuria requires workup~50% of children with single positive UA will have normal repeat. Avoid extensive workup for transient hematuria.

Step 2: Characterize the Hematuria

InvestigationPurposeWhat to Look ForInterpretation
RBC morphology (phase contrast microscopy)Distinguish glomerular from non-glomerularDysmorphic RBCs, acanthocytes>80% dysmorphic or >5% acanthocytes suggests glomerular origin
Urine sediment examinationIdentify casts and other elementsRBC casts = glomerular; WBC casts = pyelonephritis/interstitial nephritis; crystalsRBC casts are pathognomonic of glomerular bleeding
Urine protein quantificationAssess for concurrent proteinuriaSpot urine protein/creatinine ratio (normal <0.2 in children >2 years; <0.5 in children 6-24 months)Proteinuria + hematuria strongly suggests glomerular disease
Urine cultureRule out urinary tract infectionBacterial growth ≥50,000 CFU/mL from clean catch (≥10,000 from catheter)Treat infection first; repeat UA after treatment to confirm resolution

Baseline Investigations for Persistent Hematuria

InvestigationPurposeWhat to Look ForPractical Points
Complete blood countAssess for anemia, thrombocytopeniaAnemia (chronic blood loss, HUS); thrombocytopenia (HUS, leukemia); schistocytes on smearPeripheral smear for microangiopathic changes if HUS suspected
Serum creatinine and BUNAssess renal functionElevated creatinine suggests significant renal parenchymal diseaseUse age-appropriate reference ranges; calculate eGFR using Schwartz formula
Serum electrolytesAssess for metabolic derangementsHyperkalemia, metabolic acidosis in acute kidney injuryImportant in glomerulonephritis and acute kidney injury
Serum albuminAssess protein statusLow albumin suggests nephrotic-range proteinuriaHelps differentiate nephritic vs nephrotic syndrome
Renal and bladder ultrasoundStructural evaluationStones, hydronephrosis, masses, cysts, bladder abnormalities, kidney size and echogenicityFirst-line imaging for all children with hematuria; no radiation
Spot urine calcium/creatinine ratioScreen for hypercalciuriaNormal: <0.2 mg/mg in children >2 years; higher values normal in infantsMost common metabolic cause of isolated microscopic hematuria; first morning void preferred

Pediatric Reference Ranges for Creatinine

Serum creatinine varies significantly with age and muscle mass in children:

  • Neonate: 0.3-1.0 mg/dL (reflects maternal creatinine; decreases in first weeks)
  • Infant: 0.2-0.4 mg/dL
  • Child (1-10 years): 0.3-0.7 mg/dL
  • Adolescent: 0.5-1.0 mg/dL

Schwartz formula for eGFR: eGFR (mL/min/1.73m²) = k × height (cm) / serum creatinine (mg/dL), where k = 0.413 for all children using enzymatic creatinine assay

Targeted Investigations by Suspected Etiology

If Suspecting Glomerulonephritis

First-Line Tests

  • Complement levels (C3, C4):
    • Low C3, normal C4: Post-infectious glomerulonephritis, membranoproliferative glomerulonephritis, C3 glomerulopathy
    • Low C3 and C4: Lupus nephritis, cryoglobulinemia
    • Normal C3 and C4: IgA nephropathy, Alport syndrome, thin basement membrane disease
  • ASO titer and anti-DNase B: Evidence of recent streptococcal infection (post-streptococcal glomerulonephritis)
  • Throat or skin swab culture: If active infection suspected

Second-Line Tests

  • ANA, anti-dsDNA antibodies: Lupus nephritis
  • ANCA (PR3, MPO): ANCA-associated vasculitis (rare in children)
  • Anti-GBM antibodies: Anti-GBM disease (very rare in children)
  • Hepatitis B and C serology: Membranoproliferative glomerulonephritis
  • Serum IgA level: Often elevated in IgA nephropathy (not diagnostic)
  • Renal biopsy: Gold standard for diagnosis; indicated for unexplained glomerulonephritis, progressive disease, or before immunosuppressive therapy

If Suspecting Hypercalciuria or Urolithiasis

First-Line Tests

  • Spot urine calcium/creatinine ratio: >0.2 mg/mg suggests hypercalciuria in children >2 years
  • Renal ultrasound: Look for stones, nephrocalcinosis
  • Serum calcium: Rule out hypercalcemia (hyperparathyroidism, malignancy)

Second-Line Tests

  • 24-hour urine collection: Calcium >4 mg/kg/day confirms hypercalciuria; also assess oxalate, uric acid, citrate, cystine
  • Serum PTH: If hypercalcemia present
  • Stone analysis: If stone passed or retrieved
  • Non-contrast CT: If ultrasound negative but high clinical suspicion for stones (use low-dose protocol to minimize radiation)

If Suspecting Hereditary Nephritis (Alport Syndrome)

First-Line Tests

  • Family history review: Three-generation pedigree for kidney disease, hearing loss, dialysis
  • Urinalysis of first-degree relatives: May identify affected family members
  • Audiometry: Sensorineural hearing loss (high-frequency, progressive)
  • Ophthalmology examination: Anterior lenticonus, retinal flecks

Second-Line Tests

  • Genetic testing: COL4A3, COL4A4, COL4A5 mutations; increasingly first-line for diagnosis
  • Skin biopsy with immunostaining: α5(IV) collagen absent in X-linked Alport (less invasive than kidney biopsy)
  • Kidney biopsy with electron microscopy: GBM thinning, thickening, and lamellation (“basket-weave” appearance); immunostaining for collagen IV chains

If Suspecting Hemolytic Uremic Syndrome

Urgent Workup Required

HUS is a medical emergency. Order these tests immediately:

  • CBC with peripheral smear: Microangiopathic hemolytic anemia (schistocytes, helmet cells), thrombocytopenia
  • Reticulocyte count: Elevated (hemolysis)
  • LDH: Elevated (hemolysis)
  • Haptoglobin: Decreased (hemolysis)
  • Direct Coombs test: Negative (not autoimmune)
  • Renal function (creatinine, BUN): Elevated
  • Stool culture and Shiga toxin assay: STEC (Escherichia coli O157:H7 and other serotypes)
  • Coagulation studies: Usually normal (differentiates from DIC)
  • Complement studies (C3, C4, factor H, factor I): If atypical HUS suspected (no diarrhea prodrome, recurrent, familial)

If Suspecting Malignancy (Wilms Tumor)

Immediate Investigations

  • Abdominal ultrasound: First-line; characterizes mass, assesses contralateral kidney, looks for liver metastases
  • CT or MRI abdomen with contrast: Staging, vascular involvement, lymph node assessment
  • Chest X-ray or CT chest: Pulmonary metastases

Additional Investigations

  • CBC: Baseline; may show anemia
  • Liver function tests: Liver metastases
  • Coagulation studies: Preoperative
  • Urinary catecholamines: Differentiate from neuroblastoma

If Suspecting Nutcracker Syndrome

InvestigationFindingsNotes
Doppler ultrasoundLeft renal vein dilation, compression between aorta and SMA, increased peak velocity at stenosisFirst-line; operator-dependent
CT or MR angiography“Beak” sign at left renal vein compression; collateral veinsBetter anatomical detail; CT involves radiation
Retrograde venography with pressure measurementRenocaval pressure gradient >3 mmHgGold standard but invasive; rarely needed

Investigation Algorithm by Presentation

Isolated Asymptomatic Microscopic Hematuria

  1. Confirm persistence (repeat urinalysis 2-3 times over 2-4 weeks)
  2. If persistent: Urine culture, spot urine protein/creatinine, spot urine calcium/creatinine
  3. Blood pressure, serum creatinine
  4. Renal ultrasound
  5. Urinalysis of parents (if familial cause suspected)
  6. If all normal: Monitor with urinalysis, BP, and growth every 6-12 months
  7. Consider nephrology referral if: Proteinuria develops, hypertension, abnormal renal function, family history of progressive kidney disease

Gross Hematuria

  1. Urinalysis with microscopy, urine culture
  2. Blood pressure, serum creatinine, CBC
  3. Renal ultrasound (urgent if mass suspected)
  4. Urine protein/creatinine ratio
  5. If glomerular features: C3, C4, ASO, anti-DNase B
  6. Consider nephrology referral for all gross hematuria except confirmed UTI

Hematuria with Proteinuria and/or Hypertension

  1. All baseline investigations (CBC, renal function, electrolytes, albumin)
  2. Complement levels (C3, C4)
  3. Streptococcal serology (ASO, anti-DNase B)
  4. ANA if lupus suspected
  5. Renal ultrasound
  6. Nephrology referral — likely will need renal biopsy if not classic post-streptococcal glomerulonephritis

When to Refer to Pediatric Nephrology

Indications for Nephrology Referral

  • Gross hematuria (except confirmed simple UTI)
  • Persistent microscopic hematuria with proteinuria
  • Hematuria with hypertension
  • Hematuria with elevated creatinine or reduced GFR
  • Suspected glomerulonephritis
  • Family history of hereditary kidney disease (Alport syndrome, polycystic kidney disease)
  • Suspected hemolytic uremic syndrome
  • Hematuria not explained by common causes (UTI, hypercalciuria)
  • Parental anxiety requiring specialist reassurance

When to Refer to Pediatric Urology

Indications for Urology Referral

  • Urolithiasis requiring intervention
  • Structural urinary tract anomalies
  • Recurrent urinary tract infections with structural abnormality
  • Suspected bladder or renal mass
  • Urethral pathology
  • Trauma with urinary tract injury

7. Pattern Recognition and Clinical Decision-Making

Practical algorithms and decision pathways for pediatric hematuria

Step 1: Is This Urgent?

Clinical ScenarioUrgency LevelImmediate Action
Gross hematuria + severe hypertension (>95th percentile + 12 mmHg)EMERGENTIV access, antihypertensive therapy, fluid restriction, urgent nephrology consult, monitor for hypertensive emergency (encephalopathy, seizures)
Hematuria + oliguria/anuria + rising creatinineEMERGENTAssess for acute kidney injury, check potassium, fluid management, urgent nephrology consult, may need dialysis
Bloody diarrhea prodrome + pallor + petechiae + oliguriaEMERGENTSuspect hemolytic uremic syndrome; urgent CBC, smear, renal function, LDH; avoid antibiotics if STEC suspected; nephrology and hematology consult
Palpable abdominal massEMERGENTUrgent abdominal ultrasound; do not repeatedly palpate; oncology and surgery consult if mass confirmed
Significant trauma + gross hematuriaEMERGENTAssess hemodynamic stability; trauma protocol; CT with contrast if stable; surgery consult if unstable or high-grade injury
Neonatal hematuriaEMERGENTTrue hematuria rare and concerning in neonates; check coagulation, renal ultrasound (renal vein thrombosis), nephrology consult
Gross hematuria + moderate edema + hypertensionURGENTSuspect acute glomerulonephritis; baseline investigations (CBC, renal function, C3, C4, strep serology); nephrology referral within 24-48 hours
Hematuria + palpable purpura + abdominal painURGENTIgA vasculitis (Henoch-Schönlein purpura) with renal involvement; check BP, renal function, urine protein; nephrology referral
Severe colicky flank pain + hematuriaURGENTSuspect urolithiasis; pain management, renal ultrasound, urology consult if obstructing stone
Gross hematuria + fever + dysuriaURGENTLikely complicated UTI or pyelonephritis; urine culture, CBC, consider renal ultrasound; appropriate antibiotics
Isolated gross hematuria, well child, normal BPSEMI-URGENTUrinalysis, urine culture, BP, basic labs; outpatient nephrology referral within 1-2 weeks
Asymptomatic microscopic hematuriaROUTINEConfirm persistence with repeat urinalysis; basic workup; outpatient evaluation; referral if persistent with concerning features

Step 2: Classify the Hematuria

By Visibility

Gross: Visible blood → More likely to have identifiable cause; always warrants evaluation

Microscopic: ≥5 RBCs/HPF → Confirm persistence before extensive workup

By Origin

Glomerular: Dysmorphic RBCs, RBC casts, proteinuria → Think glomerulonephritis

Non-glomerular: Isomorphic RBCs, clots, no casts → Think UTI, stones, structural

By Association

Isolated: No proteinuria, normal BP, normal function → Often benign

Syndromic: With proteinuria, hypertension, edema → Suggests significant glomerular disease

Step 3: Follow the Appropriate Pathway

Pathway A: Gross Hematuria

Clinical ScenarioMost Likely DiagnosisKey InvestigationsManagement
Cola-colored urine + edema + hypertension + recent strep infectionPost-streptococcal glomerulonephritisC3 (low), C4 (normal), ASO/anti-DNase B (elevated), creatinineSupportive care, fluid/salt restriction, BP control; usually self-limited in children
Gross hematuria within 1-2 days of upper respiratory infection, recurrentIgA nephropathyC3/C4 (normal), renal function, urine protein; consider biopsy if progressiveMonitor; ACE inhibitor if proteinuria; nephrology follow-up
Dysuria + frequency + feverUrinary tract infection (hemorrhagic cystitis)Urine culture, CBC; ultrasound if recurrent or complicatedAppropriate antibiotics; repeat UA after treatment
Severe colicky pain radiating to groinUrolithiasisRenal ultrasound; CT if needed; metabolic workupPain control, hydration; urology if obstructing or large stone
Palpable purpura + arthritis + abdominal painIgA vasculitis (Henoch-Schönlein purpura)Urinalysis (protein, RBCs), renal function, BPSupportive; nephrology if renal involvement; monitor for weeks-months
Recent bloody diarrhea + pallor + oliguriaHemolytic uremic syndromeCBC + smear, LDH, haptoglobin, creatinine, stool culture/Shiga toxinSupportive care; avoid antibiotics; dialysis if needed; specialist care
History of traumaRenal/bladder injuryCT with contrast (if stable); assess for associated injuriesDepends on grade; observation vs. surgery

Pathway B: Persistent Isolated Microscopic Hematuria

Clinical ScenarioMost Likely DiagnosisKey InvestigationsManagement
Family history of kidney stones; elevated urine calcium/creatinine ratioHypercalciuriaSpot urine Ca/Cr ratio (>0.2); 24-hour urine calcium; renal ultrasoundIncrease fluids; reduce sodium intake; consider thiazide if stones form
Family history of benign hematuria; normal BP, no proteinuria, no hearing lossThin basement membrane diseaseUrinalysis of parents; genetic testing if neededReassurance; monitor annually; excellent prognosis
Family history of kidney failure + hearing lossAlport syndromeAudiometry, eye exam, genetic testing (COL4A3/4/5), consider biopsyACE inhibitor if proteinuria; monitor progression; nephrology follow-up
No family history; normal workup; otherwise wellIdiopathic/benign hematuriaBasic workup negative; consider referral to exclude subtle causesMonitor with annual urinalysis, BP, growth; reassess if changes

Pathway C: Hematuria with Proteinuria

Key Principle: Hematuria + significant proteinuria (urine protein/creatinine ratio >0.5 in young children or >0.2 in older children) strongly suggests glomerular disease and warrants nephrology referral.

  1. Confirm both findings on repeat testing
  2. Check blood pressure carefully
  3. Assess renal function (creatinine, eGFR)
  4. Order complement levels (C3, C4)
  5. Streptococcal serology if recent infection
  6. ANA if systemic symptoms suggest lupus
  7. Refer to nephrology — likely will need kidney biopsy if not classic post-streptococcal glomerulonephritis that resolves

“What Do I Do If…” Decision Reference

Clinical SituationImmediate ActionNext Step
Dipstick positive for blood but no RBCs on microscopyConsider hemoglobinuria or myoglobinuriaCheck for hemolysis (CBC, LDH, haptoglobin, peripheral smear) or rhabdomyolysis (CK, muscle symptoms)
Microscopic hematuria on routine screeningRepeat urinalysis in 2-4 weeksIf persistent, proceed with baseline workup; if resolved, no further action needed
Post-streptococcal glomerulonephritis not improving after 2 weeksRecheck C3 level; reassess clinical statusIf C3 still low after 6-8 weeks or worsening, consider alternative diagnosis; nephrology referral for possible biopsy
Child with hematuria and family member on dialysisHigh suspicion for hereditary nephritisDetailed family history, audiometry, ophthalmology exam, genetic testing; early nephrology involvement
Adolescent female with hematuriaRule out menstrual contaminationRepeat urinalysis mid-cycle with clean catch; if persistent, proceed with standard workup
Athlete with hematuria after strenuous exerciseRepeat urinalysis after 48-72 hours of restIf resolves, likely exercise-induced (benign); if persistent, evaluate further including for nutcracker syndrome
Hematuria in immunocompromised child (transplant, chemotherapy)Consider BK virus or adenovirus hemorrhagic cystitisUrine viral PCR (BK, adenovirus); supportive care; may need cidofovir for severe BK virus
Hematuria with unexplained bruisingSuspect coagulopathy or systemic illnessCBC with smear, coagulation studies (PT, PTT, fibrinogen); consider leukemia, HUS, or bleeding disorder
Recurrent gross hematuria with no diagnosis despite workupConsider nutcracker syndrome, loin pain hematuria syndrome, IgA nephropathy between flaresDoppler ultrasound of left renal vein; cystoscopy during bleeding episode; renal biopsy if glomerular features
Parents anxious about isolated microscopic hematuria with negative workupProvide reassurance with clear explanationEmphasize benign prognosis in most cases; establish monitoring plan (annual urinalysis, BP); offer nephrology referral for peace of mind if needed

Follow-Up and Monitoring Guidelines

DiagnosisFollow-Up FrequencyWhat to MonitorWhen to Re-escalate
Isolated microscopic hematuria (negative workup)Every 6-12 monthsUrinalysis, blood pressure, growthDevelopment of proteinuria, hypertension, or gross hematuria
HypercalciuriaEvery 6-12 monthsUrinalysis, urine calcium/creatinine, renal ultrasound annuallyStone formation, worsening hematuria
Thin basement membrane diseaseAnnuallyUrinalysis (proteinuria), blood pressure, renal functionDevelopment of proteinuria (may indicate Alport carrier state with risk of progression)
Post-streptococcal glomerulonephritisWeekly initially, then monthlyBP, edema, urinalysis, C3 level, creatininePersistent hypertension, C3 not normalizing by 8 weeks, worsening renal function
IgA nephropathyEvery 3-6 monthsBP, urinalysis, urine protein/creatinine, renal functionIncreasing proteinuria, hypertension, declining GFR
Alport syndromeEvery 3-6 monthsBP, urinalysis, urine protein/creatinine, renal function, audiometryIncreasing proteinuria, declining GFR, worsening hearing
IgA vasculitis (HSP) nephritisWeekly initially, then monthly for 6 months, then every 3-6 months for 1-2 yearsBP, urinalysis, urine protein/creatinine, renal functionPersistent or worsening proteinuria, hypertension, nephrotic syndrome, declining function

Troubleshooting: When Hematuria Doesn’t Fit

  • Is the sample truly representative? Consider contamination (menstrual, stool), improper collection, delayed processing
  • Is this pseudo-hematuria? Confirm RBCs on microscopy; if dipstick positive but no RBCs, investigate hemoglobinuria/myoglobinuria
  • Are there multiple causes? Children can have more than one condition (e.g., hypercalciuria AND thin basement membrane disease)
  • Is the diagnosis being reconsidered? If post-streptococcal glomerulonephritis doesn’t follow expected course (C3 normalizing, resolving hematuria), reconsider diagnosis
  • Is referral appropriate? When in doubt, pediatric nephrology consultation can help clarify diagnosis and management

8. Clinical Pearls and Pitfalls

Practical wisdom — learn from successes and avoid common mistakes

Must-Know Clinical Pearls

Confirm before you chase: Always confirm microscopic hematuria on 2-3 separate specimens over 2-4 weeks before initiating extensive workup. Up to 50% of single positive urinalyses will be negative on repeat testing.
The dipstick-microscopy mismatch: Dipstick positive for blood but no RBCs on microscopy = hemoglobinuria or myoglobinuria, not hematuria. This distinction changes the differential entirely.
RBC casts are gold: RBC casts are pathognomonic for glomerular bleeding. Finding even one RBC cast on a fresh, properly examined specimen localizes the bleeding to the kidney.
The timing tells the story: IgA nephropathy = synpharyngitic (gross hematuria within 1-2 days of upper respiratory infection). Post-streptococcal glomerulonephritis = latent period (1-2 weeks after pharyngitis, 3-6 weeks after skin infection). This timing distinction is high-yield.
Hypercalciuria is the hidden champion: Hypercalciuria is the most common cause of isolated microscopic hematuria in children (30-35% of cases). Always check a spot urine calcium/creatinine ratio — it’s easy and often diagnostic.
Family history is your friend: Many causes of pediatric hematuria are hereditary. Always ask about hematuria in family members, kidney failure, dialysis, transplant, hearing loss, and kidney stones. Test parents’ urine if thin basement membrane disease or Alport syndrome is suspected.
Clots mean it’s not glomerular: Blood clots in urine indicate non-glomerular bleeding because urokinase in the renal tubules lyses any clots that would form from glomerular bleeding.
C3 is your compass in glomerulonephritis: Low C3 with normal C4 = post-infectious glomerulonephritis, membranoproliferative glomerulonephritis, or C3 glomerulopathy. Low C3 and C4 = lupus nephritis. Normal C3 and C4 = IgA nephropathy, Alport syndrome, thin basement membrane disease.
Blood pressure matters: Always measure blood pressure in any child with hematuria. Hypertension is a key finding that elevates concern for glomerulonephritis and requires prompt attention.
Most isolated microscopic hematuria is benign: In children with isolated asymptomatic microscopic hematuria and negative basic workup, approximately 80% will have resolution or remain stable without progression to kidney disease. Reassure families while maintaining appropriate monitoring.

Critical Pitfalls to Avoid

Don’t ignore neonatal hematuria: True hematuria is rare in neonates and should never be dismissed. It may indicate renal vein thrombosis, coagulopathy, or congenital anomalies. Always investigate urgently.
Don’t skip the microscopy: A positive dipstick for blood is not sufficient — always confirm with urine microscopy. Missing the dipstick-microscopy mismatch means missing hemolysis or rhabdomyolysis.
Don’t assume “it’s just a UTI”: While UTI is common, gross hematuria with systemic symptoms (edema, hypertension, oliguria) suggests glomerulonephritis, not just infection. Always assess for glomerular features.
Don’t repeatedly palpate an abdominal mass: If you feel an abdominal mass in a child with hematuria, do not keep examining it. Wilms tumor can rupture with manipulation. Order imaging immediately.
Don’t give antibiotics for suspected STEC-HUS: In a child with bloody diarrhea and evolving hemolytic uremic syndrome, antibiotics may increase Shiga toxin release and worsen outcomes. Supportive care is the mainstay.
Don’t forget menstrual contamination: In adolescent females, always consider menstrual contamination as a cause of apparent hematuria. Repeat urinalysis mid-cycle with proper clean catch technique.
Don’t miss Alport syndrome by forgetting to ask about hearing: Sensorineural hearing loss is a key feature of Alport syndrome. Always ask about hearing concerns and arrange audiometry if hereditary nephritis is suspected.
Don’t assume post-streptococcal glomerulonephritis if C3 doesn’t normalize: C3 should begin to normalize within 6-8 weeks. If it remains low, consider alternative diagnoses such as membranoproliferative glomerulonephritis or C3 glomerulopathy. Refer to nephrology.
Don’t use adult thresholds for pediatric blood pressure: Blood pressure must be interpreted using age-, sex-, and height-specific percentiles in children. An “normal” adult BP may be severely elevated in a young child.
Don’t forget non-accidental injury: Unexplained hematuria, especially with other concerning features (bruising, mechanism inconsistent with injury, delayed presentation), should raise consideration of child abuse. Evaluate carefully and involve appropriate services.

Key Takeaways

  • Confirm before investigating: Repeat urinalysis 2-3 times over 2-4 weeks to confirm persistence of microscopic hematuria before extensive workup.
  • Distinguish glomerular from non-glomerular: Cola-colored urine, dysmorphic RBCs, RBC casts, and proteinuria suggest glomerular origin; bright red urine, clots, and isomorphic RBCs suggest non-glomerular.
  • The “Big Five” causes: UTI, hypercalciuria, post-infectious glomerulonephritis, IgA nephropathy, and thin basement membrane disease account for most pediatric hematuria.
  • Always check blood pressure: Hypertension with hematuria is a red flag for significant glomerular disease requiring urgent evaluation.
  • Proteinuria elevates concern: Hematuria with significant proteinuria strongly suggests glomerular disease and warrants nephrology referral.
  • Family history guides diagnosis: Many causes are hereditary — always ask about hematuria, kidney disease, hearing loss, and kidney stones in family members.
  • Age matters: Consider age-specific causes: Wilms tumor peaks at 3-4 years, post-streptococcal glomerulonephritis is common at 5-12 years, and IgA nephropathy often presents in older children and adolescents.
  • Most isolated microscopic hematuria is benign: With negative workup, reassure families while maintaining appropriate long-term monitoring.
  • Know when to refer: Gross hematuria, hematuria with proteinuria or hypertension, suspected hereditary nephritis, and any unexplained persistent hematuria warrant nephrology referral.
  • Don’t miss emergencies: Hemolytic uremic syndrome, abdominal mass (Wilms tumor), neonatal hematuria, and severe hypertension require urgent evaluation and management.

Quick Reference Algorithm

Systematic Approach to Pediatric Hematuria:

  1. Confirm true hematuria: Dipstick positive → microscopy confirms ≥5 RBCs/HPF → repeat 2-3 times if microscopic
  2. Assess urgency: Check vital signs (especially blood pressure), look for red flags (edema, oliguria, mass, systemic illness)
  3. Classify the hematuria: Gross vs. microscopic; glomerular vs. non-glomerular; isolated vs. with proteinuria/hypertension
  4. Take thorough history: Use “BLOOD” mnemonic; emphasize family history, recent infections, medications, trauma
  5. Perform systematic examination: Growth parameters, blood pressure, edema, abdominal masses, skin findings, hearing
  6. Order appropriate investigations: Baseline (urinalysis, culture, creatinine, ultrasound, urine calcium/creatinine) → targeted based on clinical suspicion
  7. Make disposition decision: Emergent (immediate intervention), urgent (same-day evaluation), semi-urgent (outpatient referral within 1-2 weeks), or routine (monitoring with primary care)
  8. Establish follow-up plan: Monitor urinalysis, blood pressure, proteinuria, and growth at appropriate intervals based on diagnosis