03

APPLIED AKI & CRITICAL CARE NEPHROLOGY · VOLUME 5

Chapter 3

Urinalysis & Imaging

Indices, Sediment & POCUS in AKI

Orientation & KnowledgeVisualise & MapClinical ReasoningSafety & EvidencePatient DecisionsApply & Test
Chapter Preamble

Signals declared

  • Sig-D — Diagnostic (primary). The work is to turn the urine, the blood chemistry, and the imaging into an AKI category and, where possible, a cause.
  • Sig-M — Mechanistic (secondary). Every test is a readout of a mechanism — how the tubule handles sodium, whether it can still concentrate, whether pressure is backing up — so the chapter explains what each result means physiologically before it means anything clinically.

Levels populated and omitted

Populated (17): L1–L13, L18–L20, L22. The mechanistic signal keeps the concept maps (L6) and mechanism–why–action triads (L9) firing; the diagnostic signal drives the tables, rules, cases, pitfalls, and board items.

  • L14 absolute-risk — omitted. No Sig-T/E/V; this chapter interprets tests, it does not quantify treatment outcomes.
  • L15 / L16 preference-sensitive map and SDM scripts — omitted. No Sig-E; choosing and reading a test is effective care, not a values-driven choice.
  • L17 documentation templates — omitted. No Sig-P/T; the chapter teaches interpretation, not a logged procedure or prescription note.
  • L21 reflective prompts — omitted. No Sig-E/V; the chapter's tensions are diagnostic and are worked through the pitfalls (L12).
Phase A Orientation & Knowledge
01
Phase A · Level 1

Learning Objectives

By the end of this chapter you should be able to:

  • Interpret the urine dipstick, knowing what it detects and what it misses — light chains, and pigment masquerading as red cells.
  • Read the urine sediment to separate bland from active, and match casts and cells to an intrinsic compartment.
  • Calculate and interpret the fractional excretion of sodium and of urea, and state when each is valid and when it lies.
  • Use urine osmolality, urine sodium, and the urea-to-creatinine ratio to support the category, with their confounders in mind.
  • Choose the right imaging — ultrasound first to exclude obstruction — and explain why early hydronephrosis can be absent.
  • Apply point-of-care ultrasound (inferior vena cava, bladder, lungs, venous congestion) to assess volume and obstruction at the bedside.
  • Integrate dipstick, sediment, indices, and imaging into a single AKI category.
02
Phase A · Level 2

Executive Summary

  • The urine is a biopsy you can read in minutes; spun fresh and examined promptly, it does more diagnostic work than any single blood test in AKI.
  • The dipstick detects albumin, not light chains, so a negative protein pad never excludes myeloma kidney.
  • A dipstick positive for blood with no red cells on microscopy means pigment — myoglobin or haemoglobin — not glomerular bleeding.
  • A bland sediment fits pre-renal and post-renal AKI; an active sediment — casts and cells — means intrinsic parenchymal disease.
  • Muddy-brown granular casts and renal tubular epithelial cells point to ATN; red-cell casts to glomerulonephritis; white-cell casts to interstitial nephritis or pyelonephritis.
  • FENa below 1% favours pre-renal AKI and above 2% favours ATN, because the pre-renal tubule avidly reabsorbs sodium while the injured tubule cannot.
  • FENa is only interpretable in oliguric AKI and is confounded by diuretics, CKD, contrast, pigment, sepsis, and early obstruction.
  • On diuretics, use the fractional excretion of urea (below 35% favours pre-renal), because urea is handled proximally and is less disturbed by loop and thiazide agents.
  • Concentrated urine (osmolality above 500) reflects intact tubules and ADH; isosthenuria near 300 reflects the lost concentrating ability of ATN.
  • A BUN-to-creatinine ratio above 20 suggests pre-renal physiology but is confounded by gastrointestinal bleeding, steroids, catabolism, and protein intake.
  • Every AKI earns a renal ultrasound to exclude obstruction unless the cause is obvious and already reversing.
  • Hydronephrosis can be absent early or in a volume-deplete patient, so a normal first scan does not exclude obstruction when suspicion is high.
  • Point-of-care ultrasound extends the examination: the inferior vena cava and lungs gauge volume and congestion, the bladder gives a post-void residual, and venous-excess imaging flags congestion in cardiorenal disease.
  • No single test makes the diagnosis; the category emerges when sediment, indices, and imaging are read together against the clinical story.
03
Phase A · Level 3

Main Narrative

The urine is a biopsy you can read in minutes, and in acute kidney injury it is the test that most often changes the plan. A dipstick, a centrifuged sediment, a pair of fractional excretions, and a bedside ultrasound will sort most AKIs into a category before any specialist result returns. Each of these tests is a window onto a mechanism, so reading them well means knowing not just the cut-off but the physiology the cut-off reports.

The urine is a biopsy you can read in minutes

Four cheap tests, used in order, answer most of the question. The dipstick screens for blood, protein, and infection. The sediment shows whether the parenchyma is inflamed. The fractional excretions report how the tubule is handling sodium and urea. The ultrasound excludes obstruction and reads volume. None is definitive alone, but together they triangulate the category the previous chapter demanded. The single discipline that matters most is to examine the sediment fresh: casts and cells degrade within the hour, and a delayed specimen quietly turns an active sediment bland.

The dipstick: what it sees and what it misses

The blood pad detects haem, not red cells, so it lights up for myoglobin and free haemoglobin as readily as for true haematuria. A strongly positive blood pad with no red cells on microscopy is therefore the signature of pigment — rhabdomyolysis or intravascular haemolysis — not glomerular bleeding. The protein pad is just as treacherous in the opposite direction: it reads albumin and is nearly blind to immunoglobulin light chains. A patient with cast nephropathy from myeloma can have a negative or trace protein dipstick while spilling grams of light chain, which is why a dipstick-protein that disagrees with a high urine protein-to-creatinine ratio should prompt a search for a non-albumin protein. Specific gravity, glucose, leukocyte esterase, and nitrites fill in the picture, but each has its own confounder — contrast and glucose inflate specific gravity, and a negative nitrite never excludes infection.

The sediment: bland versus active

The first question of the sediment is binary: bland or active? A bland sediment — a few hyaline casts, little else — fits pre-renal and post-renal AKI, where the parenchyma is intact. An active sediment moves the diagnosis into intrinsic disease, and the particular elements name the compartment. Muddy-brown granular casts and renal tubular epithelial cells are the fingerprint of acute tubular necrosis — sloughed, degenerating tubular cells. Red-cell casts and dysmorphic red cells, deformed as they squeeze through an inflamed glomerular basement membrane, mean glomerulonephritis or vasculitis. White-cell casts with pyuria point to interstitial nephritis or pyelonephritis. Broad, waxy casts speak of chronic, advanced disease. Crystals add their own clues: envelope-shaped calcium oxalate in ethylene-glycol poisoning, uric acid in tumour lysis, and the drug crystals of aciclovir, sulfadiazine, methotrexate, and atazanavir.

Fractional excretion: why the tubule's sodium handling tells the story

The fractional excretion of sodium asks what proportion of filtered sodium the kidney is letting go. FENa equals (urine sodium × plasma creatinine) divided by (plasma sodium × urine creatinine), times 100. In pre-renal AKI the tubule is intact and, driven by angiotensin II and aldosterone, reabsorbs sodium avidly; almost none escapes, so FENa falls below 1%. In established ATN the injured tubule has lost that grip and sodium leaks into the urine, pushing FENa above 2%. The number is not a separate fact to memorise — it is a direct readout of whether the tubular cells are working. It is only interpretable in oliguric AKI, because a non-oliguric kidney has not been asked the question.

When FENa lies, and what to use instead

FENa is confounded often enough that a single value should never overrule the clinical picture. Diuretics force sodium out and falsely raise it in a genuinely pre-renal patient. Chronic kidney disease runs a higher baseline FENa. And it can be deceptively low — under 1% despite real tubular injury — in contrast nephropathy, pigment nephropathy, sepsis, early obstruction, and glomerulonephritis, all of which preserve some sodium avidity. When the patient is on a diuretic, switch to the fractional excretion of urea: urea is reabsorbed largely in the proximal tubule, upstream of where loop and thiazide diuretics act, so a FEUrea below roughly 35% still flags pre-renal physiology when FENa has been corrupted.

Osmolality, urine sodium, and the urea ratio

Three cruder measures back up the fractional excretions. Urine osmolality reads the concentrating mechanism: above 500 mOsm/kg means intact tubules responding to ADH, the pre-renal pattern, while a value stuck near plasma — isosthenuria around 300 — means the medullary gradient and concentrating machinery are damaged, the ATN pattern. A spot urine sodium below 20 mmol/L echoes the avid reabsorption of pre-renal AKI and above 40 the leak of ATN, though it is less reliable than FENa. The BUN-to-creatinine ratio rises above 20 in pre-renal states because urea is reabsorbed alongside the water the kidney is busy conserving; treat it as supportive only, since gastrointestinal bleeding, corticosteroids, a catabolic state, and high protein intake all raise urea independently.

Imaging: ultrasound first, and the POCUS extension

Ultrasound is the first-line image in AKI for one non-negotiable reason: it excludes obstruction. It also reads kidney size and echogenicity — small, bright kidneys betray chronicity, while normal or enlarged kidneys fit an acute or infiltrative process — and Doppler can interrogate the renal vessels. Its blind spot is timing: a freshly obstructed or volume-deplete collecting system may not yet have dilated, so a normal first scan does not exclude obstruction when the clinical suspicion is high; rehydrate and repeat, or move to non-contrast CT, which is also the test of choice for stones. Point-of-care ultrasound has turned this into a bedside, repeatable examination. The inferior vena cava and lung fields gauge volume and congestion, a bladder view gives an immediate post-void residual, and venous-excess (VEXUS) imaging grades the venous congestion that drives cardiorenal AKI — a theme Chapter 6 develops.

Putting it together: from tests to category

Read in concert, the tests collapse onto the categories of Chapter 2. A bland sediment with concentrated urine, FENa under 1%, a high urea ratio, and no hydronephrosis is pre-renal. Muddy-brown casts with isosthenuria and FENa over 2% is ATN. Dysmorphic red cells and red-cell casts are glomerular; white-cell casts with a new drug are interstitial; hydronephrosis is post-renal. The art is not in any single result but in refusing to let one number — a diuretic-inflated FENa, an early-negative ultrasound, a pigment-positive dipstick — override the pattern the others draw.

04
Phase A · Level 4

Reference Tables

Table 3.1 — The dipstick: what each pad means and misses

PadDetectsPitfall
BloodHaem (RBCs, myoglobin, haemoglobin)Positive with no RBCs on micro = pigment, not bleeding
ProteinAlbuminNearly blind to light chains — misses myeloma
Leukocyte esterase / nitritePyuria / nitrate-reducing bacteriaNegative nitrite does not exclude infection
Specific gravityUrine concentrationInflated by glucose and contrast

Table 3.2 — Casts and what they mean

CastPoints to
HyalineNormal or pre-renal (concentrated urine)
Muddy-brown granularAcute tubular necrosis
Red-cellGlomerulonephritis or vasculitis
White-cellInterstitial nephritis or pyelonephritis
Broad / waxyChronic, advanced kidney disease
Fatty / oval fat bodiesHeavy (nephrotic-range) proteinuria

Table 3.3 — Cells and crystals

FindingPoints to
Dysmorphic red cellsGlomerular bleeding
Isomorphic red cellsUrologic (lower-tract) bleeding
Renal tubular epithelial cellsAcute tubular necrosis
White cells (sterile pyuria)Interstitial nephritis
Calcium oxalate (envelope) crystalsEthylene-glycol poisoning
Uric acid crystalsTumour lysis syndrome; acid urine
Drug crystalsAciclovir, sulfadiazine, methotrexate, atazanavir

Table 3.4 — Urine indices: pre-renal versus ATN

IndexPre-renalATN
FENa (oliguric, off diuretics)< 1%> 2%
FEUrea (useful on diuretics)< 35%> 50%
Urine osmolality> 500 mOsm/kg~ 300 (isosthenuric)
Spot urine sodium< 20 mmol/L> 40 mmol/L
BUN : creatinine> 2010–15

Table 3.5 — When the indices lie

TrapWhat happens
DiureticsFalsely raise FENa in pre-renal AKI — use FEUrea instead
Low FENa despite injuryContrast, pigment, sepsis, early obstruction, GN preserve sodium avidity
High baseline FENaChronic kidney disease runs FENa higher at baseline
Non-oliguric AKIFENa is not interpretable when output is preserved
High BUN : creatinineGI bleed, steroids, catabolism, protein load raise urea independently

Table 3.6 — Imaging modalities in AKI

ModalityBest forCaveat
Renal ultrasoundExcluding obstruction; size and echogenicityEarly/dehydrated obstruction may show no hydronephrosis
Point-of-care ultrasoundVolume (IVC), congestion (lungs, VEXUS), bladder residualOperator-dependent; complements, not replaces
Non-contrast CTStones and the obstructed tractRadiation; no soft-tissue contrast
DopplerRenal artery/vein patency; resistive indexTechnically demanding in the unstable patient
Phase B Visualise & Map
05
Phase B · Level 5

Imaging & Flowchart Specifications

Figure 3.1 — The sediment atlas plate
Figure 3.1 — The sediment atlas plate
Figure 3.2 — Reading FENa and FEUrea
Figure 3.2 — Reading FENa and FEUrea
Figure 3.3 — The POCUS panel
Figure 3.3 — The POCUS panel
Flowchart 3.A — Using the tests to categorise AKI
Flowchart 3.A — Using the tests to categorise AKI
07
Phase B · Level 7

Decision Pathways

R1
IF the urine sediment is active (casts or cells), THEN the AKI is intrinsic — match the element to its compartment and stop reasoning as if it were pre-renal.
R2
IF the dipstick is strongly positive for blood but microscopy shows no red cells, THEN suspect pigment (myoglobin or haemoglobin) and send creatine kinase and haemolysis markers.
R3
IF the dipstick protein is low but the urine protein-to-creatinine ratio is high, THEN search for a non-albumin protein — light chains — with electrophoresis.
R4
IF AKI is oliguric and the patient is off diuretics, THEN use FENa (< 1% pre-renal, > 2% ATN); otherwise it is not interpretable.
R5
IF the patient is on a diuretic, THEN use FEUrea (< 35% pre-renal) instead of FENa.
R6
IF FENa is under 1% but the picture fits ATN, THEN remember contrast, pigment, sepsis, early obstruction, and glomerulonephritis can all keep it low — trust the pattern, not the number.
R7
IF AKI has no obvious, rapidly reversing cause, THEN obtain a renal ultrasound to exclude obstruction.
R8
IF obstruction is suspected but the first ultrasound is normal, THEN rehydrate and repeat or proceed to non-contrast CT before excluding it.

Clinical Reasoning

Phase C Clinical Reasoning
08
Phase C · Level 8

Clinical Cases

CASE 1THE CONCENTRATED URINE

Sodium-poor and proud of itConfirming pre-renal AKI from the urine

Presentation

A 70-year-old woman with three days of poor intake is oliguric with a creatinine of 2.4 mg/dL (baseline 0.9). She is on no diuretics. The sediment shows only hyaline casts; urine osmolality is 620 mOsm/kg, urine sodium 12 mmol/L, FENa 0.4%, BUN:creatinine 28.

Pause and reflect

Do these numbers agree, and what single category do they draw?

Analysis

Every test points the same way. The bland sediment excludes intrinsic disease; the concentrated, sodium-poor urine and FENa under 1% show a tubule reabsorbing avidly; the high urea ratio fits a kidney conserving water. This is textbook pre-renal AKI, and because she is off diuretics, the FENa is valid.

Plan

Restore perfusion with balanced crystalloid and recheck. Expect the creatinine to fall within one to three days; if it plateaus despite restored volume, reassess for the cross-over to ATN.

Teaching point

When sediment, indices, and the urea ratio all agree, you have your category. Concordance is the win; the work begins when they disagree.

Cross-reference

Exercises rules R1 and R4; the pre-renal urine concept map; Tables 3.4 and 3.2.

CASE 2BLOOD WITHOUT RED CELLS

The dipstick that liedPigment versus glomerular bleeding

Presentation

A 25-year-old man found down after a night of immobility has AKI and dark, tea-coloured urine. The dipstick reads blood 3+, but microscopy shows no red cells. He has diffuse muscle tenderness.

Pause and reflect

The dipstick says blood, the microscope says none. What is in the urine, and what do you send next?

Analysis

The blood pad detects haem, and myoglobin carries haem, so it lights up the dipstick without any red cells to show under the microscope. The combination of a positive blood pad, an empty microscopic field, dark urine, and muscle tenderness is rhabdomyolysis until proven otherwise — not glomerular bleeding.

Plan

Send creatine kinase and check potassium, phosphate, and calcium. Begin early, generous fluid resuscitation for the pigment load. The detailed management of rhabdomyolysis belongs to Chapter 12; here the task was to read the dipstick-microscopy mismatch correctly.

Teaching point

A blood-positive dipstick with no red cells is pigment, not haematuria. The two tests disagree on purpose, and the disagreement is the diagnosis.

Cross-reference

Exercises rule R2; the pigment concept map; Table 3.1; rhabdomyolysis in Chapter 12.

CASE 3THE DIURETIC TRAP

A high FENa that wasn't ATNChoosing the right fractional excretion

Presentation

An 82-year-old man with heart failure on high-dose furosemide develops AKI after a diarrhoeal illness. He looks dry. FENa comes back at 2.6%, and the team is ready to call it ATN — until the FEUrea returns at 28%.

Pause and reflect

Two fractional excretions, two different stories. Which one do you believe here, and why?

Analysis

The furosemide is forcing sodium into the urine, inflating FENa and mimicking ATN in a patient who is clinically pre-renal. Urea is reabsorbed in the proximal tubule, upstream of where the loop diuretic acts, so the FEUrea of 28% is not corrupted and reveals the true pre-renal physiology.

Plan

Trust the FEUrea and the clinical picture: treat as pre-renal, restore volume, and hold the diuretic while reassessing. Recheck function rather than committing him to an ATN label that fluid would never fix.

Teaching point

On diuretics, FENa is the wrong instrument. Reach for FEUrea, and let the proximal handling of urea report the physiology the diuretic has hidden.

Cross-reference

Exercises rules R5 and R6; the diuretic-confounder concept map; Tables 3.4 and 3.5.

CASE 4THE SCAN THAT WAS NORMAL TOO SOON

Obstruction the first ultrasound missedWhy a normal scan does not exclude it

Presentation

A 68-year-old woman with cervical cancer presents anuric with a creatinine of 5.0 mg/dL. She is markedly volume-deplete. The first renal ultrasound reports no hydronephrosis, and intrinsic AKI is suggested.

Pause and reflect

Anuria with a pelvic malignancy, yet no hydronephrosis. Are you reassured?

Analysis

Anuria plus a pelvic tumour is bilateral ureteric obstruction until proven otherwise. A severely volume-deplete collecting system may not dilate, so an early ultrasound can read normal even with complete obstruction. The negative scan is a timing artefact, not an exclusion.

Plan

Do not accept the normal scan. Rehydrate and repeat the ultrasound, or proceed to non-contrast CT; arrange decompression — nephrostomy or stent — and anticipate post-obstructive diuresis once flow is restored.

Teaching point

A normal first ultrasound never excludes obstruction when the clinical suspicion is high. Rehydrate, repeat, or image differently before you let it off the hook.

Cross-reference

Exercises rules R7 and R8; the lagging-hydronephrosis concept map; Table 3.6; post-renal AKI in Chapter 2.

09
Phase C · Level 9

Clinical Implications

One triad per mechanism the narrative exposed: the physiology, why it matters, and the bedside move.

MECHANISM

The pre-renal tubule, driven by angiotensin II and aldosterone, reabsorbs sodium avidly; the ATN tubule has lost that capacity.

WHY IT MATTERS

FENa is a direct readout of tubular integrity, not a separate fact — it falls below 1% pre-renal and rises above 2% in ATN.

ACTION

Compute FENa only in oliguric AKI off diuretics, and read it as a statement about the tubule.

MECHANISM

Pre-renal tubules concentrate urine via ADH and an intact medullary gradient; ATN destroys the concentrating mechanism.

WHY IT MATTERS

Urine osmolality separates the two: above 500 means working tubules, isosthenuria near 300 means injured ones.

ACTION

Use osmolality to corroborate FENa, especially when one index is confounded.

MECHANISM

Urea is reabsorbed proximally, upstream of where loop and thiazide diuretics act on sodium.

WHY IT MATTERS

Diuretics corrupt FENa but largely spare FEUrea, so FEUrea recovers the pre-renal signal on diuretics.

ACTION

When the patient is diuresed, switch to FEUrea (< 35%) before labelling ATN.

MECHANISM

The dipstick blood pad detects haem, which myoglobin and free haemoglobin carry as well as red cells.

WHY IT MATTERS

A positive pad with no microscopic red cells means pigment, redirecting the work-up to muscle or haemolysis.

ACTION

On a blood-positive, RBC-negative urine, send creatine kinase and haemolysis markers, not a glomerular screen.

MECHANISM

Pelvicalyceal dilation takes time and needs volume; an early or dehydrated obstruction may not have dilated yet.

WHY IT MATTERS

A normal first ultrasound can coexist with complete obstruction, creating false reassurance.

ACTION

When suspicion is high, rehydrate and repeat the scan or move to CT before excluding obstruction.

MECHANISM

Injured tubular cells slough into the lumen and aggregate with Tamm-Horsfall protein into pigmented granular casts.

WHY IT MATTERS

Muddy-brown granular casts are therefore specific for established tubular injury.

ACTION

Treat granular casts plus a failure to respond to perfusion as confirmation of ATN.

10
Phase C · Level 10

Clinical Pearls

Examine the sediment fresh — casts and cells degrade within the hour and an active sediment quietly turns bland.
Bland sediment fits pre-renal and post-renal; an active sediment means intrinsic disease.
Blood-positive dipstick with no red cells on microscopy = pigment, not bleeding.
A low dipstick protein never excludes light chains — the pad reads albumin only.
Muddy-brown granular casts plus failure to respond to perfusion confirm ATN.
Dysmorphic red cells and red-cell casts are glomerular; isomorphic red cells are urologic.
FENa is only interpretable in oliguric AKI off diuretics.
On diuretics, use FEUrea (< 35% pre-renal) — urea is handled proximally.
A low FENa does not always mean pre-renal: contrast, pigment, sepsis, early obstruction, and GN keep it low.
Urine osmolality > 500 means working tubules; isosthenuria near 300 means injured ones.
BUN:creatinine > 20 supports pre-renal but is confounded by GI bleed, steroids, and catabolism.
Every AKI without an obvious reversing cause earns an ultrasound to exclude obstruction.
A normal first ultrasound does not exclude obstruction when suspicion is high — rehydrate, repeat, or CT.
Small bright kidneys mean chronicity; normal or large kidneys fit acute or infiltrative disease.
POCUS reads volume and congestion at the bedside: IVC, lung B-lines, bladder residual, venous excess.
No single number makes the diagnosis — the category is the pattern across sediment, indices, and imaging.

Safety & Evidence

Phase D Safety & Evidence
11
Phase D · Level 11

Red Flags & Never-Do

Panel A — Red flags

Anuria with a pelvic malignancy or single kidney — bilateral obstruction until imaging proves otherwise, even if the first scan looks normal.
Red-cell casts — a glomerulonephritis or vasculitis that needs urgent nephrology input, not fluid.
Blood-positive dipstick with no red cells plus muscle tenderness — rhabdomyolysis; check potassium and creatine kinase now.
Envelope-shaped oxalate crystals with AKI and an acidosis — consider ethylene-glycol poisoning, a time-critical diagnosis.
A dipstick-protein that badly underestimates a high protein-to-creatinine ratio — hunt for light chains.

Panel B — Never do

NEVER — accept a normal first ultrasound as excluding obstruction when suspicion is high.
NEVER — interpret FENa in a non-oliguric patient or one on diuretics.
NEVER — call a blood-positive, red-cell-negative urine glomerular bleeding.
NEVER — let one confounded number override the pattern drawn by the others.
12
Phase D · Level 12

Common Pitfalls

Pitfall 1 — The diuretic-inflated FENa

WRONG Calling ATN because FENa is 2.6% in a patient on high-dose furosemide.
RIGHT Switching to FEUrea, which reads 28% and confirms pre-renal physiology.
WHY Loop diuretics force natriuresis and inflate FENa; urea handling proximal to the drug is spared.

Pitfall 2 — Pigment read as haematuria

WRONG Working up glomerular bleeding because the dipstick shows blood 3+.
RIGHT Confirming no red cells on microscopy and sending creatine kinase for pigment.
WHY The blood pad detects haem; myoglobin lights it up with no red cells present.

Pitfall 3 — The stale sediment

WRONG Reporting a bland sediment from a sample that sat for hours before spinning.
RIGHT Examining a freshly voided, promptly centrifuged specimen.
WHY Casts and cells lyse and degrade within the hour, falsely blanding an active sediment.

Pitfall 4 — The reassuring early scan

WRONG Excluding obstruction because an early ultrasound in a dehydrated patient showed no hydronephrosis.
RIGHT Rehydrating and repeating the scan, or proceeding to CT.
WHY A volume-deplete or freshly obstructed collecting system has not dilated yet.

Pitfall 5 — The albumin-only protein read

WRONG Dismissing myeloma kidney because the dipstick protein is only trace.
RIGHT Comparing albumin:creatinine with protein:creatinine and sending electrophoresis.
WHY The dipstick reads albumin and is nearly blind to light chains.
13
Phase D · Level 13

Evidence Grading

GRADE

A

HIGH CONFIDENCE

The effect is real and the estimate is stable.

RCTs at low risk of bias; multiple concordant prospective cohorts; meta-analyses.

GRADE

B

MODERATE CONFIDENCE

The effect is likely real but may shift with new data.

Observational studies, registries, mechanistic human studies.

GRADE

C

LOW CONFIDENCE

Rests on physiology, reasoning, or consensus rather than outcomes.

Pathophysiological reasoning; extrapolation; consensus without outcomes.

Graded statements (by evidence type)

StatementGradeBasis (evidence type)
Urine sediment findings map to AKI categories (granular casts to ATN, RBC casts to GN).BConsistent observational and diagnostic-accuracy studies
FENa < 1% favours pre-renal AKI in oliguric patients off diuretics.BDiagnostic-accuracy studies with defined limits
FEUrea outperforms FENa for pre-renal AKI when patients are on diuretics.BComparative observational studies
A blood-positive dipstick without red cells indicates pigment.AEstablished assay chemistry; reproducible
Ultrasound reliably detects established obstruction but can miss it early or in volume depletion.BObservational imaging studies
Point-of-care ultrasound improves bedside volume and congestion assessment.BGrowing prospective evidence; outcome data maturing
A single urine index should not override the clinical and sediment pattern.CConsensus and reasoning from known confounders

Apply & Test

Phase F Apply & Test
18
Phase F · Level 18

Cheat Sheet

Spin and read the sediment FRESH — within the hour.
Bland = pre/post-renal; active (casts, cells) = intrinsic.
Granular muddy-brown casts → ATN; RBC casts → GN; WBC casts → AIN/pyelonephritis.
Dysmorphic RBCs = glomerular; isomorphic = urologic.
Blood pad + (no RBCs) = pigment (myoglobin/haemoglobin) → send CK.
Protein pad reads albumin only — misses light chains.
FENa = (UNa × PCr) ÷ (PNa × UCr) × 100.
FENa < 1% pre-renal, > 2% ATN — only if oliguric and off diuretics.
On diuretics: use FEUrea < 35% (pre-renal).
Low FENa despite injury: contrast, pigment, sepsis, early obstruction, GN.
Uosm > 500 = intact tubules; ~300 isosthenuria = ATN.
BUN:Cr > 20 supports pre-renal (confounded by GI bleed, steroids, catabolism).
Ultrasound first — exclude obstruction; small bright kidneys = chronic.
Normal early scan ≠ no obstruction; rehydrate/repeat or CT. POCUS: IVC, B-lines, bladder, VEXUS.
19
Phase F · Level 19

Flashcards

CARD 1

Q. What does a dipstick blood pad actually detect, and what does a positive pad with no RBCs mean?

Show answer

A. It detects haem; a positive pad with no red cells on microscopy means pigment — myoglobin or haemoglobin.

DETAILED. Myoglobin and free haemoglobin carry haem and cross-react on the pad.

CLINICAL. Send creatine kinase and haemolysis markers, not a glomerular screen.

CARD 2

Q. How do you separate a bland from an active sediment, and what does each mean?

Show answer

A. Bland (hyaline casts only) fits pre/post-renal; active (granular, RBC, or WBC casts and cells) means intrinsic disease.

DETAILED. The specific element names the compartment — tubular, glomerular, interstitial.

CLINICAL. An active sediment moves the AKI out of the pre-renal box.

CARD 3

Q. Write the FENa formula and its interpretation.

Show answer

A. FENa = (urine Na × plasma Cr) ÷ (plasma Na × urine Cr) × 100; < 1% pre-renal, > 2% ATN.

DETAILED. It reads tubular sodium handling and is only valid in oliguric AKI off diuretics.

CLINICAL. The number is a statement about tubular integrity, not a separate fact.

CARD 4

Q. When and why do you use FEUrea instead of FENa?

Show answer

A. On diuretics: a FEUrea < 35% favours pre-renal AKI.

DETAILED. Urea is reabsorbed proximally, upstream of where loop and thiazide diuretics act.

CLINICAL. Diuretics inflate FENa but largely spare FEUrea.

CARD 5

Q. What does urine osmolality tell you in AKI?

Show answer

A. Above 500 mOsm/kg means intact, concentrating tubules (pre-renal); near 300 (isosthenuria) means injured tubules (ATN).

DETAILED. It reads the concentrating mechanism — ADH plus the medullary gradient.

CLINICAL. Use it to corroborate a confounded FENa.

CARD 6

Q. Why does a low dipstick protein not exclude myeloma kidney?

Show answer

A. The protein pad reads albumin and is nearly blind to immunoglobulin light chains.

DETAILED. A protein:creatinine ratio far higher than albumin:creatinine signals a non-albumin protein.

CLINICAL. Send electrophoresis when the two disagree.

CARD 7

Q. Why is ultrasound first-line in AKI, and what is its blind spot?

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A. It excludes obstruction and reads size/echogenicity; its blind spot is early or volume-deplete obstruction that has not dilated.

DETAILED. Pelvicalyceal dilation takes time and volume.

CLINICAL. A normal early scan does not exclude obstruction when suspicion is high.

CARD 8

Q. What does point-of-care ultrasound add to the AKI assessment?

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A. Bedside reads of volume and congestion: IVC, lung B-lines, bladder post-void residual, and venous-excess grading.

DETAILED. It makes volume status a repeatable examination rather than a one-off guess.

CLINICAL. Especially useful in cardiorenal and obstructive pictures.

20
Phase F · Level 20

One-Minute Preceptor

SCENE 1
The student calling ATN on FENa
GET A COMMITMENT“You've called this ATN — what's your evidence?”
PROBE FOR EVIDENCE“FENa is 2.6%” — ask: “Is he on a diuretic, and what does that do to FENa?”
TEACH A GENERAL RULEOn diuretics, FENa is inflated and unreliable; FEUrea, handled proximally, recovers the pre-renal signal.
REINFORCE WHAT WAS RIGHTReaching for a fractional excretion to sort pre-renal from ATN was exactly right.
CORRECT A MISTAKESend a FEUrea and re-read the picture before committing to ATN.
SCENE 2
The resident reassured by a normal scan
GET A COMMITMENT“You've excluded obstruction — on what basis?”
PROBE FOR EVIDENCE“The ultrasound showed no hydronephrosis” — ask: “How volume-deplete is she, and how long has she been obstructed?”
TEACH A GENERAL RULEA dehydrated or freshly obstructed system may not have dilated; a normal early scan does not exclude obstruction.
REINFORCE WHAT WAS RIGHTGetting an early ultrasound was the correct first move.
CORRECT A MISTAKERehydrate and repeat, or get a non-contrast CT, before ruling obstruction out.
22
Phase F · Level 22

Board-Style Questions

Q 01
A patient's urine dipstick is positive for blood 3+, but microscopy shows no red cells. The most likely explanation is:

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Q 02
An oliguric patient off all diuretics has a FENa of 0.6% and urine osmolality of 600 mOsm/kg. Which category do these support?

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Q 03
A patient on high-dose furosemide has a FENa of 2.6% but a FEUrea of 28%. The correct interpretation is:

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Q 04
Which urine finding most specifically indicates glomerular disease rather than pre-renal AKI?

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Q 05
An anuric patient with a pelvic malignancy has a creatinine of 5.0 mg/dL and is markedly volume-deplete. The first ultrasound shows no hydronephrosis. The best next step is to:

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Q 06
A myeloma patient has a urine protein-to-creatinine ratio of 4 g/g but only trace protein on dipstick. Why the discrepancy?

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Q 07
In which situation is the FENa NOT interpretable?

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Q 08
Which statement about reading the urine and imaging in AKI is most correct?

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