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March 1, 1985AJP Heart and Circulatory Physiology81 citations

Frequency modulation and synchronization of spontaneous oscillations in cardiac cells

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MCM. C. CapogrossiELEdward G. Lakatta

Structured PICO

P
Population
Single adult Ca2+-tolerant myocytes from rats and rabbits
I
Intervention
Electrical stimulation at rates between 6 and 120 min-1, with or without higher cell Ca2+ loading (via increased [Ca2+]o, isoproterenol, or ouabain)
C
Comparator
Unstimulated cells
O
Outcome
Characteristics of spontaneous myofilament oscillations (frequency, synchronization, amplitude)surrogate

Electrical stimulation modulates spontaneous myofilament oscillations in isolated myocytes, which may explain Ca2+-dependent oscillatory phenomena in intact cardiac tissues.

Abstract

Both intact mammalian cardiac muscle and single adult Ca2+-tolerant myocytes, under appropriate experimental conditions, exhibit periodic, spontaneous myofilament oscillations that originate locally within a cell and propagate longitudinally as contractile waves. We have used microscopic imaging techniques to study the effect of electrical stimulation on the oscillation characteristics in single rat and rabbit myocytes. Unstimulated rat cells bathed in Cao of 1-3 mM exhibited these oscillations. During stimulation at rates between 6 and 120 min-1, oscillations did not occur in the interval between stimulated contractions, and following termination of stimulation a transient suppression of the spontaneous oscillation frequency occurred. Conversely, with higher cell Ca2+ loading, achieved by increasing the Ca2+o or by addition of isoproterenol or ouabain, stimulation caused de novo oscillations in rabbit cells and increased the spontaneous oscillation frequency in rat cells to levels that resulted in their appearance between stimulated contractions. The tendency for myofilament motion to occur simultaneously at multiple foci was also increased by stimulation at high frequencies, and partial synchronization of these foci resulted in oscillations of an increased amplitude. The modulation of the spontaneous oscillation characteristics in single cells by stimulation may explain, in part, some effects of stimulation on Ca2+-dependent oscillatory phenomena in intact cardiac tissues.

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Cite This Study

Capogrossi et al. (1985) studied this question.

synapsesocial.com/papers/6a23a3e7c1f1c7a6bca04cbdhttps://doi.org/10.1152/ajpheart.1985.248.3.h412
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