Home▸MASLD/NAFLD — Неалкогольна жирова хвороба печінки▸Liver Elastography (FibroScan) Stiffness Simulator

🍔 Liver Elastography (FibroScan) Stiffness Simulator

Model of transient elastography of the liver that shows the dependence of stiffness (kPa) and controlled attenuation parameter (CAP) on the degree of fibrosis and steatosis.

MASLD/NAFLD — Неалкогольна жирова хвороба печінки2DModerate60 FPS
liver-elastography-fibroscan-stiffness-simulator ↗ Open standalone

Probe Placement on the Right Upper Quadrant

A single bedside probe replaces the liver biopsy needle.

  • ~5 min: Exam duration (bedside, no sedation)
  • ≥10: Valid shots required (per exam)
  • 25–65 mm: Probe depth range (skin to liver capsule)
  • <30%: IQR/Median limit (reliability criterion)

Where the probe goes

Intercostal space, right lobe, patient lying supine.

Why placement matters

Rib shadow or ascites can invalidate the reading.

M and XL probes

XL probe suits obese patients with thicker chest wall.

Shear Wave Generation via Mechanical Impulse

A brief vibration launches a shear wave into the liver.

  • 50 Hz: Push vibration freq (transient impulse)
  • ~4000 Hz: Tracking pulse rate (ultrasound A-mode)
  • ~4 cm: Wave travel distance (through parenchyma)
  • VCTE: Method name (vibration-controlled transient elastography)

The mechanical tap

A tiny transducer-mounted piston taps the skin surface.

Shear vs compression waves

Shear waves move sideways, sensitive to tissue elasticity.

Ultrafast tracking

Pulse-echo ultrasound tracks the wavefront position over time.

Stiffness Measurement — Wave Speed to Kilopascals

Faster shear waves mean stiffer, more fibrotic liver tissue.

  • E=3ρc²: Formula (Young modulus from speed)
  • 2–6 kPa: Normal liver (F0 range)
  • ≥12.5 kPa: Cirrhosis threshold (F4 range)
  • 1.5–75 kPa: Reported range (device output)

Speed-to-stiffness conversion

Shear wave velocity c feeds directly into E=3ρc².

Fibrosis stiffens tissue

Collagen deposition raises tissue rigidity and wave speed.

Ten valid measurements

Median of ten shots gives the final kPa value.

CAP — Controlled Attenuation Parameter

Fat droplets scatter ultrasound, dimming the returning signal.

  • dB/m: CAP unit (signal attenuation rate)
  • <238 dB/m: Normal liver (S0 range)
  • >290 dB/m: Severe steatosis (S3 range)
  • Same probe: Measured with (simultaneous acquisition)

Attenuation physics

Fat droplets scatter sound, weakening the echo with depth.

Simultaneous with kPa

CAP is computed from the very same ultrasound shots.

Grading steatosis

CAP score bins liver fat into S0 through S3.

Fibrosis Staging — F0 to F4

The kPa value places the liver on the Metavir ladder.

  • <7.0 kPa: F0–F1 (none to mild fibrosis)
  • 7.0–9.4 kPa: F2 (significant fibrosis)
  • 9.5–12.4 kPa: F3 (severe fibrosis)
  • ≥12.5 kPa: F4 (cirrhosis)

Metavir mapping

Each kPa band corresponds to a Metavir fibrosis stage.

Biopsy avoidance

Staging replaces most diagnostic liver biopsies today.

Combined report

kPa and CAP together describe fibrosis plus steatosis.

Fibrosis (F) and steatosis (S) ladders

ProductIndicationTrial DesignKey Result
F0 / S0<6 kPa / <238 dB/mHealthy parenchymaNo intervention needed
F1 / S16–7 kPa / 238–260 dB/mMild changeMonitor annually
F2 / S27–9 kPa / 260–290 dB/mModerate changeTreat underlying cause
F3–F4 / S3>9 kPa / >290 dB/mSevere / cirrhosisSpecialist referral
⚙ Under the hood

Model of transient elastography of the liver that shows the dependence of stiffness (kPa) and controlled attenuation parameter (CAP) on the degree of fibrosis and steatosis.

CanvasBiomedicine

2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install

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