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October 1, 1995Circulation306 citations

Determination of Left Ventricular Chamber Stiffness From the Time for Deceleration of Early Left Ventricular Filling

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WLWilliam C. LittleMOMichiya OhnoDKDalane W. Kitzman

Structured PICO

Does the time for deceleration of LV early filling accurately estimate left ventricular chamber stiffness in a canine model?

P
Population
8 conscious dogs instrumented for measurement of LV pressure and volume
I
Intervention
Calculation of LV chamber stiffness (KLV) from the time for deceleration of LV early filling (tdec)
C
Comparator
Actual KLV determined from the slope of the late diastolic portion of the LV P-V loop
O
Outcome
Correlation between predicted KLV and actual KLVsurrogate

Left ventricular chamber stiffness can be accurately estimated noninvasively from the time for deceleration of early LV filling.

Abstract

BACKGROUND: A noninvasive measure of left ventricular (LV) chamber stiffness (KLV) would be clinically useful. Our theoretical analysis predicts that KLV can be calculated from the time for deceleration of LV early filling (tdec) by formula: see text where p = density of blood, L = effective mitral length, and A = mitral area. METHODS AND RESULTS: We tested this hypothesis in eight conscious dogs instrumented for measurement of LV pressure (P) with use of a micromanometer and volume (V) with use of sonomicrometers. KLV was determined as the slope of the late diastolic portion of the LV P-V loop. KLV was varied from 0.99 +/- 0.35 to 2.58 +/- 0.92 mm Hg/mL with use of three graded doses of phenylephrine. We assumed that p = 1.0 and that L/A = 3.4. Thus, we predicted that KLV = (0.08/tdec)2. The LV filling pattern was determined from the derivative of LV volume (dV/dt). tdec was measured from peak early filling to the end of early filling. Predicted KLV and actual KLV were closely correlated (r = .94, SEE = 0.06 mm Hg/mL, P < .05). The regression line was close to the line of identity (slope = 0.95, intercept = 0.13 mm Hg/mL). Dobutamine did not alter the relation between tdec and KLV.tdec determined from the mitral valve flow velocity measured with Doppler echocardiography correlated well with that measured by dV/dt (r = .89, P < .01) but was 0.02 seconds longer. KLV-calculated tdec from the corrected Doppler tdec provided a good estimate of measured KLV (r = .75, SEE = 0.5 mm Hg/mL, P < .01). CONCLUSIONS: LV chamber stiffness can be determined from the time for deceleration of LV early filling, which can be measured noninvasively.

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Cite This Study

Little et al. (1995) studied this question.

synapsesocial.com/papers/6a1d238428423f2ce504d0bdhttps://doi.org/10.1161/01.cir.92.7.1933
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Left ventricular chamber stiffness from model-based image processing of transmitral Doppler E-waves1997 · 38 citations
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  4. 4Chamber properties from transmitral flow: prediction of average and passive left ventricular diastolic stiffness2001 · 84 citations
  5. 5Dynamic determinants of letf ventricular diastolic pressure-volume relations in man.1975 · 144 citations