LVOT-VTI — Left Ventricular Outflow Tract Velocity–Time Integral
LVOT-VTI is the distance that blood travels through the LV outflow tract during one systolic ejection. It is one of the most useful echocardiographic measurements for estimating stroke volume (SV) and cardiac output (CO).
Table of Contents
ToggleHow to measure LVOT-VTI
Step 1 —Apical 5-chamber view or Apical 3-chamber (apical long-axis) view
You want the ultrasound beam to be as parallel as possible to LVOT blood flow.
Step 2 — Use PW Doppler
Place the pulsed-wave Doppler sample volume in the LVOT, usually approximately 5 mm proximal to the aortic valve.
Important: Do not place the PW Doppler sample inside the aortic valve jet.
- LVOT location is confirmed if VTI trace is followed by Closing click
- if both an aortic valve opening click and closing click are visible/audible, that means PW sample is too close to the aortic valve.
- If both clicks Absent then cursor location is in LV cavity.
Step 3 — Record several beats
Trace the dense outer envelope of the systolic Doppler waveform.
For sinus rhythm, usually average 3–5 beats.
With atrial fibrillation or significant beat-to-beat variation, average more beats, commonly 5–10, using appropriately selected beats.
LVOT-VTI Normal Value 18–22 cm(its is surrogate of stroke volume)
LVOT-VTI Variability
LVOT-VTI variability is a dynamic echocardiographic parameter used to assess preload responsiveness—i.e., whether stroke volume is likely to increase after a fluid challenge.
A large respiratory variation suggests that stroke volume is changing significantly with respiration, which can indicate preload dependence.
In an appropriate patient, a high LVOT-VTI variation (>10%) therefore suggests that fluid administration may increase stroke volume.
When is it reliable?
- controlled ventilation
- adequate tidal volume(8ml/Kg)
- no significant spontaneous respiratory effort
- sinus rhythm
- no major RV failure
For spontaneously breathing patients, consider PLR + LVOT-VTI:
- Measure baseline LVOT-VTI.
- Perform passive leg raising.
- Re-measure LVOT-VTI.
- A meaningful increase indicates that increasing preload increases stroke volume → fluid responsive.
LVOT-Vmax variability
Vmax is the peak instantaneous velocity during LV ejection.But Vmax variability is generally less useful than VTI variability for estimating changes in stroke volume.
Parameters Calculation Formulas
Parameter | formula |
LVOT Area | LVOT Area = π × (LVOT diameter / 2)² |
Stroke Volume (SV) | SV = LVOT Area × LVOT VTI |
Cardiac Output (CO) | CO = SV × HR |
Mean LVOT-VTI | VTImean = (VTImax + VTImin) / 2 |
LVOT-VTI Variability | ΔVTI (%) = [(VTImax − VTImin) / VTImean] × 100 |
Mean LVOT-Vmax | Vmaxmean = (Vmaxmax + Vmaxmin) / 2 |
LVOT-Vmax Variability | ΔVmax (%) = [(Vmaxmax − Vmaxmin) / Vmaxmean] × 100 |
VTI change after PLR | ΔVTI (%) = [(VTIpost-PLR − VTIbaseline) / VTIbaseline] × 100 |
VTI change after fluid challenge | ΔVTI (%) = [(VTIpost-fluid − VTIbaseline) / VTIbaseline] × 100 |
