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September 1, 1996Clinical Cardiology6 citationsOpen Access

Evaluation of left ventricular relaxation using the continuous‐wave doppler velocity profile of aortic regurgitation: Noninvasive measurement of left ventricular negative dP/dt and time constant

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YHYuka HondaYYYoshiyuki YokotaMYMitsuhiro Yokoyama

Key Result

Noninvasive Doppler-derived maximal rate of pressure fall and time constant strongly correlated with invasive catheter-derived measurements (r=0.97 and r=0.87, respectively; both p<0.001).

Key Points

  • This study aimed to measure left ventricular relaxation using noninvasive Doppler techniques to obtain max (-)dP/dt and time constant.
  • Evaluated 10 patients with trivial to mild aortic regurgitation using Doppler velocity profiles.
  • Calculated pressure gradients and derived maximum rate of pressure fall using cardiac imaging.
  • Performed dobutamine echocardiography on nine patients to assess changes in left ventricular relaxation.
  • Doppler-derived maxRPF and time constant closely approximated catheter-derived values (maxRPF: y = 0.85x + 245, r = 0.97, p < 0.001).
  • Dobutamine echocardiography showed increased maxRPF and decreased time constant, indicating improved left ventricular relaxation.

Study Design

Type

Observational (n=10)

Structured PICO

Can continuous-wave Doppler aortic regurgitation velocity curves accurately and noninvasively measure left ventricular relaxation indices compared to invasive catheterization?

P
Population
10 patients with trivial to mild aortic regurgitation (AR)
I
Intervention
Noninvasive measurement of maximal rate of pressure fall (maxRPF) and time constant (T) using continuous-wave Doppler aortic regurgitation velocity curve (AR-CW)
C
Comparator
Invasive catheter-derived max(-)dP/dt and T
O
Outcome
Correlation between Doppler-derived and catheter-derived indices of LV relaxation (maxRPF vs max(-)dP/dt and TD vs T)surrogate

Continuous-wave Doppler of aortic regurgitation provides a reliable, noninvasive method to evaluate left ventricular relaxation indices, closely approximating invasive catheter measurements.

Main Result

Effect estimate: r = 0.97 and r = 0.87

p-value: p=<0.001

Abstract

BACKGROUND: The maximal negative dP/dt max (-)dP/dt and time constant (T) are useful indices for evaluating left ventricular (LV) relaxation, but they require invasive procedures. HYPOTHESIS: The purpose of this study was to obtain max (-)dP/dt and T using the continuous-wave Doppler aortic regurgitation velocity curve (AR-CW) noninvasively. Using the Bernoulli equation, the AR-CW allows accurate determination of the pressure gradients (PG) between the aorta and the left ventricle. METHODS: In 10 patients with trivial to mild AR, the rising segment of the AR-CW reflecting LV pressure decrease was digitized with the cardiac image analysis system. Transpulmonary contrast-enhanced Doppler echocardiography was used in three patients to obtain intense velocity envelope. The PG curve and the firs derivative curve were reconstructed and the maximal point of the first derivative curve, which is consistent with max(-)dP/dt, was termed as maximal rate of pressure fall (maxRPF). As T (calculated according to the method of Weiss) can be obtained from T=Pm/max(-)dP/dt Pm: LV pressure at the phase of max(-)dP/dt, we calculated T from Pm/maxRPF (Pm=dicrotic notch pressure-4Vm2) (Vm: AR velocity at the phase of maxRPF). RESULTS: The Doppler-derived maxRPF and T (TD) approximated the catheter-derived max(-)dP/dt and T (y = 0.85x + 245, r = 0.97, p < 0.001, y = 0.79x + 4, r = 0.87, p < 0.001). In addition, dobutamine echocardiography was performed in nine patients showing increased maxRPF and decreased TD, indicating improvement of LV relaxation. CONCLUSION: These Doppler-derived new indices are sufficiently useful to evaluate LV relaxation noninvasively.

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Cite This Study

Honda et al. (1996) conducted an observational in Trivial to mild aortic regurgitation (n=10). Continuous-wave Doppler aortic regurgitation velocity curve (AR-CW) vs. Invasive catheter-derived measurements was evaluated on Correlation between Doppler-derived and catheter-derived max(-)dP/dt and T (r = 0.97 and r = 0.87, p=<0.001). Noninvasive Doppler-derived maximal rate of pressure fall and time constant strongly correlated with invasive catheter-derived measurements (r=0.97 and r=0.87, respectively; both p<0.001).

synapsesocial.com/papers/6a158cac79ff98d0de4ecc35https://doi.org/10.1002/clc.4960190907
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