RVOT velocity–time integral

RVOT VTI · Pulsed Doppler, parasternal short axis at the aortic valve level (or subcostal), sample volume in the mid-RVOT just proximal to the pulmonary valve

Normal range & thresholds

Normal ≈17–22 cm, with a normal RVOT peak velocity <1.0–1.5 m/s. RV stroke volume = π(RVOT D/2)2 × RVOT VTI, with RVOT diameter normally 1.8–2.5 cm measured in mid-systole. RVOT VTI <10 cm indicates a severely reduced right-sided output and is a marker of poor prognosis in pulmonary hypertension and in shock.[3,19,33]
Pulmonary vascular resistance (Abbas): PVR (Wood units) ≈ (TR Vmax / RVOT VTI) × 10 + 0.16 — a screening estimate only, unreliable above about 6 Wood units.[49]

Pathophysiology

The RVOT VTI is the right-sided stroke distance, and in the steady state right and left ventricular stroke volumes must be equal — so a discrepancy between them is itself the measurement of a shunt (Qp:Qs). The shape of the envelope carries additional information that the integral does not: in a normal, low-resistance pulmonary circuit the envelope is symmetric and rounded, while in a high-resistance circuit wave reflection from the stiffened proximal pulmonary arteries returns during systole, producing a short acceleration time and a mid-systolic notch.[3,47]

Raised by

Lowered by

Technique & pitfalls

Pseudo-change & artefact

Treatment thresholds

Next step

Drugs

Reversibility

Tracks RV function and afterload, so it is reversible to the degree those are: substantial recovery after treatment of acute pulmonary embolism, after pulmonary endarterectomy for CTEPH, after ASD closure, and in vasodilator responders; minimal once RV failure with fibrosis is established. As a purely haemodynamic measure it also changes within minutes with volume and inotropes — interpret serial values in the context of the treatment on the day.[8]