Mitral stenosis deceleration time

MS DT · Same CW inflow trace as the pressure half-time; DT is the extrapolation of the E-wave downslope to baseline

Normal range & thresholds

MVA ≈ 759 / DT, which follows directly from MVA = 220/PHT and PHT = 0.29 × DT.[43]
Severe mitral stenosis (MVA ≤1.5 cm²) therefore corresponds to a DT ≥≈520 ms, and very severe (≤1.0 cm²) to a DT ≥≈760 ms. For the normal, non-stenotic mitral valve the equivalent measurement is the diastolic-function deceleration time of card 15, where 160–240 ms is normal — the same measurement carries completely different meaning depending on whether the valve is obstructed, and confusing the two is a real reporting hazard.

Pathophysiology

Identical physiology to the pressure half-time, of which the deceleration time is simply the un-scaled form. The clinical value of reporting DT rather than PHT is that DT is what the machine measures directly and what the eye can check on the spectral display, so an implausible PHT can be caught by looking at the slope. Its limitation is identical: the slope encodes orifice area and the compliance of the receiving chambers, and the equation cannot separate them.[43]

Raised by

Lowered by

Technique & pitfalls

Pseudo-change & artefact

Treatment thresholds

Next step

Drugs

Reversibility

Identical to the pressure half-time: immediate mechanical improvement with valvuloplasty or surgery, slow progression untreated, no pharmacological reversibility.[45]