PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
July 1, 1986Circulation582 citations

Left ventricular filling dynamics: influence of left ventricular relaxation and left atrial pressure.

View Full Paper
YIYasushi IshidaJMJay S. MeisnerKTK. Tsujioka

Structured PICO

Is peak rapid filling rate determined by both left atrial pressure and left ventricular relaxation rate in conscious dogs?

P
Population
Conscious dogs
I
Intervention
Infusions of volume and angiotensin II to alter loading conditions (A-1: change in LV pressure <35%, A-2: change in peak LV pressure >35%)
C
Comparator
Baseline or different loading conditions
O
Outcome
Peak rapid filling rate (PRFR) and its correlation with left atrial pressure at atrioventricular pressure crossover (PCO) and time constant of left ventricular pressure decline (T)surrogate

Peak rapid filling rate is influenced by both left atrial pressure and left ventricular relaxation rate, suggesting it should be used cautiously as a sole index of early diastolic function.

Abstract

Peak rapid filling rate (PRFR) is often used clinically as an index of left ventricular relaxation, i.e., of early diastolic function. This study tests the hypothesis that early filling rate is a function of the atrioventricular pressure difference and hence is influenced by the left atrial pressure as well as by the rate of left ventricular relaxation. As indexes, we chose the left atrial pressure at the atrioventricular pressure crossover (PCO), and the time constant (T) of an assumed exponential decline in left ventricular pressure. We accurately determined the magnitude and timing of filling parameters in conscious dogs by direct measurement of phasic mitral flow (electromagnetically) and high-fidelity chamber pressures. To obtain a diverse hemodynamic data base, loading conditions were changed by infusions of volume and angiotensin II. The latter was administered to produce a change in left ventricular pressure of less than 35% (A-1) or a change in peak left ventricular pressure of greater than 35% (A-2). PRFR increased with volume loading, was unchanged with A-1, and was decreased with A-2; T and PCO increased in all three groups (p less than .005 for all changes). PRFR correlated strongly with the diastolic atrioventricular pressure difference at the time of PRFR (r = .899, p less than .001) and weakly with both T (r = .369, p less than .01) and PCO (r = .601, p less than .001). The correlation improved significantly when T and PCO were both included in the multivariate regression (r = .797, p less than .0001). PRFR is thus determined by both the left atrial pressure and the left ventricular relaxation rate and should be used with caution as an index of left ventricular diastolic function.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Ishida et al. (1986) studied this question.

synapsesocial.com/papers/6a10bdbf5e6663f9d264567chttps://doi.org/10.1161/01.cir.74.1.187
Ask AI
Helpful
Bookmark
Share
View Full Paper