Aortic valve velocity–time integral
AV VTI (transvalvular) · Continuous-wave Doppler across the aortic valve from apical 5-/3-chamber plus right parasternal and suprasternal windows
Normal range & thresholds
Normal transaortic peak velocity <1.7–2.0 m/s. The VTI itself is used as a ratio, not as an absolute number.
Aortic stenosis severity[5]:
‘Very severe’: Vmax ≥5.0 m/s or mean gradient ≥60 mmHg.[5,7]
Aortic stenosis severity[5]:
| Mild | Moderate | Severe | |
|---|---|---|---|
| Vmax | 2.6–2.9 m/s | 3.0–3.9 m/s | ≥4.0 m/s |
| Mean gradient | <20 mmHg | 20–39 mmHg | ≥40 mmHg |
| DVI (LVOT VTI / AV VTI) | >0.25 | <0.25 | |
Pathophysiology
Velocity across a fixed orifice is set by the pressure drop across it (the simplified Bernoulli relation, ΔP = 4V2) and by the flow crossing it. That second dependence is the entire difficulty of aortic stenosis assessment: a severely stenotic valve with a poorly contracting or small, underfilled ventricle generates a low velocity and a low gradient, and looks moderate. Conversely a high-flow state — anaemia, fever, arteriovenous fistula, or significant aortic regurgitation — can push a moderate valve into the severe velocity range.[5]
Raised by
- Aortic stenosis — valvular, and (with a different envelope shape) subvalvular or supravalvular
- High flow: significant aortic regurgitation, anaemia, thyrotoxicosis, fever, pregnancy, arteriovenous fistula, sepsis, dialysis fistula
- Bicuspid valve with an eccentric jet
- Prosthetic valve obstruction, thrombosis, pannus, or patient–prosthesis mismatch
- Falsely: contamination by a mitral regurgitation jet on the CW trace (see below)
Lowered by
- Low-flow states — LV systolic dysfunction, small hypertrophied ventricle with a low stroke volume, mitral stenosis or severe MR reducing forward flow, tachyarrhythmia, hypovolaemia
- Failure to interrogate from enough windows — the commonest reason for underestimating aortic stenosis, and it is entirely operator-dependent
- After relief of obstruction
Technique & pitfalls
- Interrogate from multiple windows — always. Apical 5-chamber, apical 3-chamber, right parasternal (patient in the right lateral decubitus, with a dedicated non-imaging Pedof probe if available) and suprasternal. The right parasternal window gives the highest velocity in roughly a quarter of patients, and skipping it systematically under-grades aortic stenosis.[5,17]
- Trace the outer edge of the dense CW envelope (the opposite convention from the pulsed LVOT trace).
- Report Vmax, mean gradient, VTI, the window used, the heart rate and the blood pressure.
- In atrial fibrillation, average 5–10 beats and avoid post-extrasystolic beats, which exaggerate the gradient.
- Distinguish the aortic envelope from a mitral regurgitation jet: MR starts earlier (during isovolumic contraction), lasts longer, is usually higher velocity, and has no clear opening/closing clicks aligned to ejection.
Pseudo-change & artefact
- Mitral regurgitation contamination of the CW beam — the classic false ‘severe aortic stenosis’; check timing and duration against the ECG.
- Pressure recovery in a small aorta (ascending aorta <3.0 cm): Doppler overestimates the net gradient; energy loss index corrects for it.[5]
- High-flow states overestimate severity; low-flow states underestimate it.
- Non-parallel alignment — underestimates.
- Gain set too high, so spectral noise is traced — overestimates.
- Systemic hypertension at the time of study lowers the transvalvular gradient; a study performed while the patient is markedly hypertensive under-grades the valve.[5]
Treatment thresholds
- Severe aortic stenosis (Vmax ≥4 m/s or mean gradient ≥40 mmHg) plus symptoms → aortic valve replacement, class I.[6,7]
- Asymptomatic severe AS with LVEF <50% → AVR, class I.[6,7]
- Asymptomatic very severe AS (Vmax ≥5.0 m/s), or rapid progression (≥0.3 m/s per year), or a markedly raised natriuretic peptide, or an abnormal exercise test → AVR, class IIa. The RECOVERY and AVATAR trials, and more recently EARLY TAVR, support earlier intervention in asymptomatic severe disease.[6,7,61,62,63]
- 2025 ESC/EACTS: the age threshold favouring TAVI over surgery in tricuspid-valve aortic stenosis has moved from 75 to 70 years.[6]
- Prosthetic valves: a rising mean gradient with a falling DVI defines prosthetic obstruction and triggers TOE, CT and consideration of reintervention or thrombolysis.[20,21]
Next step
- Next: reconcile velocity, gradient, valve area, dimensionless index and stroke volume index. If they disagree, the study is not finished.
- Then: if low-gradient with low flow and reduced LVEF → low-dose dobutamine stress echocardiography to separate true-severe from pseudo-severe stenosis and to test contractile reserve.[5,28]
- Then: if low-gradient with preserved LVEF (paradoxical low-flow) → aortic valve calcium score by non-contrast CT (≥3000 AU men, ≥1600 AU women highly likely severe).[5,80]
- Then: exercise testing in the truly asymptomatic patient — symptoms, a fall in blood pressure or arrhythmia convert a IIa into a I.[6,7]
- Then: Heart Team, coronary assessment, and gated CTA for access and annular sizing.
Drugs
- No medical therapy modifies aortic stenosis. Statins do not slow it; RAAS blockade does not reverse it. Say this plainly to patients who expect otherwise.[7]
- Treat hypertension — but measure the gradient at a controlled blood pressure, because afterload alters the number.
- Vasodilators need care in severe stenosis with a fixed output.
- Beta-blockade lowers the gradient by lowering flow, not by improving the valve.
- Correct anaemia and thyrotoxicosis before finalising severity in a high-flow patient.
Reversibility
0% for the native valve. Aortic stenosis is progressive: the untreated gradient rises by roughly 7 mmHg and Vmax by about 0.3 m/s per year on average, faster with heavier calcification and renal disease. The velocity falls only when the obstruction is relieved — immediately and permanently after surgical or transcatheter replacement, subject to prosthesis–patient mismatch. In pseudo-severe, low-flow stenosis, restoring flow with dobutamine raises the gradient without the valve having changed — the diagnostic use of that reversibility.[5,60]