LVOT velocity–time integral

LVOT VTI · Pulsed Doppler, apical 5- or 3-chamber, 3–5 mm sample volume 5–10 mm proximal to the aortic valve

Normal range & thresholds

Normal 18–22 cm at a normal heart rate. Stroke volume = LVOT cross-sectional area × LVOT VTI = π(D/2)2 × VTI. Stroke volume index 35–55 mL/m²; SVI <35 mL/m² defines the low-flow state that underpins low-gradient aortic stenosis.[5,33]
In critical care, LVOT VTI <15 cm indicates a low cardiac output, and a rise of >10–12% with passive leg raising or a fluid challenge indicates fluid responsiveness.

Pathophysiology

The velocity–time integral is the distance a column of blood travels through the outflow tract during one systole — the ‘stroke distance’. Multiplied by the cross-sectional area of the tract, it is stroke volume; multiplied by heart rate, cardiac output. Because the LVOT diameter changes little within a given patient, serial LVOT VTI is a direct, geometry-free measure of that patient’s stroke volume, which is why it is the workhorse of haemodynamic echocardiography.[33]

Raised by

Lowered by

Technique & pitfalls

Pseudo-change & artefact

Treatment thresholds

Next step

Drugs

Reversibility

Immediately load- and rhythm-dependent, so the acute component is fully reversible — a fluid bolus or an inotrope changes it within minutes. The chronic component follows LV function: it rises in parallel with reverse remodelling on GDMT, after valve intervention (immediately, once the obstruction or regurgitation is relieved), and after successful rate or rhythm control. It falls permanently only when contractile tissue is lost.[33]