Literature DB >> 1370136

Kinetics of restitution of left ventricular relaxation.

S D Prabhu1, G L Freeman.   

Abstract

Although the kinetics of cardiac systolic force restitution have been well described, the restitution kinetics of left ventricular relaxation have not been examined. To define relaxation restitution behavior, we studied seven dogs chronically instrumented with left ventricular high-fidelity micromanometers and piezoelectric dimension crystals. After a priming period at a basic cycle length of 375 msec, test extrastimuli were introduced after a range of extrasystolic intervals (ESIs). Relaxation behavior of control and extrasystolic beats was characterized by the time constant of isovolumic relaxation, tau. Relaxation restitution can be described by two concatenated monoexponential curves, an early phase described by a rapid time constant and a late phase described by a slower time constant (TC1, 36.21 +/- 7.90 msec; TC2, 75.94 +/- 10.65 msec; p less than 0.05). The first phase of relaxation restitution parallels systolic force restitution over the same range and displays faster recovery (TCs, 58.93 +/- 10.01 msec, p less than 0.05). Postextrasystolic restitution of test pulses after beats at fixed ESIs depends on the initial ESI. Relaxation recovery of postextrasystolic beats proceeds faster with smaller initial ESIs (TC1 for ESI of 300 msec, 13.27 +/- 4.05 msec; TC1 for ESI of 450 msec, 72.85 +/- 21.72 msec; p less than 0.0001). The monoexponential pattern of restitution was seen with model-independent descriptors of relaxation as well as with tau.

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Year:  1992        PMID: 1370136     DOI: 10.1161/01.res.70.1.29

Source DB:  PubMed          Journal:  Circ Res        ISSN: 0009-7330            Impact factor:   17.367


  2 in total

1.  Minimal force-frequency modulation of inotropy and relaxation of in situ murine heart.

Authors:  D Georgakopoulos; D Kass
Journal:  J Physiol       Date:  2001-07-15       Impact factor: 5.182

2.  Analysis of postextrasystolic relaxation response in the human heart.

Authors:  Kiminori Kato; Makoto Kodama; Satoru Hirono; Yuji Okura; Haruo Hanawa; Takaaki Shiono; Masahiro Ito; Koichi Fuse; Keiichi Tsuchida; Seitaro Maruyama; Tsuyoshi Yoshida; Satoru Abe; Manabu Hayashi; Akimitsu Nasuno; Takashi Saigawa; Takuya Ozawa; Yoshifusa Aizawa
Journal:  Mol Cell Biochem       Date:  2003-09       Impact factor: 3.396

  2 in total

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