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September 1, 1985Circulation Research748 citationsOpen Access

Microneurographic studies of the mechanisms of sympathetic nerve responses to static exercise in humans.

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AMAllyn L. MarkRVRonald G. VictorCNC Nerhed

Structured PICO

How do muscle afferents and central command regulate sympathetic nerve activity during static exercise in healthy subjects?

P
Population
20 healthy subjects
I
Intervention
Static arm exercise (sustained handgrip at 30% maximal voluntary contraction followed by relaxation or arrested circulation; voluntary and involuntary biceps contraction at 20% MVC)
C
Comparator
Baseline resting state, relaxation without arrested circulation, and involuntary vs. voluntary contraction
O
Outcome
Muscle sympathetic nerve activity (measured via microelectrodes in the peroneal nerve), heart rate, and arterial pressuresurrogate

Muscle sympathetic nerve activity during static exercise is primarily driven by chemically sensitive muscle afferents rather than central command.

Abstract

The purpose of this study was to determine the contribution of muscle afferents and central command in regulating sympathetic nerve activity during static exercise in humans. In 20 healthy subjects, we recorded heart rate, arterial pressure, and efferent sympathetic nerve activity in the leg during arm exercise. Microelectrodes were inserted percutaneously into a fascicle of the peroneal nerve to measure sympathetic discharge to muscle. Measurements were obtained in nine subjects during sustained handgrip (30% maximal voluntary contraction) followed by relaxation or by arrested circulation of the forearm. Heart rate and arterial pressure increased during the first and second minutes of handgrip. Muscle sympathetic nerve activity increased from 261 +/- 46 to 504 +/- 97 units (mean +/- SE; units = burst frequency X amplitude; P less than 0.05) during the second minute of handgrip. During forearm ischemia following handgrip, heart rate returned promptly to control, whereas arterial pressure and muscle sympathetic nerve activity (631 +/- 115 units) remained elevated. In contrast, muscle sympathetic nerve activity returned toward control during relaxation without arrested circulation. These data indicate that muscle sympathetic nerve activity is increased by stimulation of chemically sensitive muscle afferents. To determine the influence of central command on muscle sympathetic nerve activity, we compared responses during an involuntary and a voluntary biceps contraction, each at 20% maximal voluntary contraction. Both maneuvers raised arterial pressure, but heart rate increased only during voluntary contraction. More importantly, muscle sympathetic nerve activity rose during involuntary contraction, but fell during voluntary effort.(ABSTRACT TRUNCATED AT 250 WORDS)

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Cite This Study

Mark et al. (1985) studied this question.

synapsesocial.com/papers/69d5707e75589c71d767dc91https://doi.org/10.1161/01.res.57.3.461
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