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February 1, 1999Journal of Applied Physiology74 citations

Characteristics of the muscle mechanoreflex during quadriceps contractions in humans

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MHMichael D. HerrVIVirginia A. ImadojemuAKAllen R. Kunselman

Structured PICO

P
Population
8 men
I
Intervention
Repetitive static quadriceps contraction paradigm at 25% maximal voluntary contraction (20-s contractions with 5-s rest periods for up to 12 contractions)
O
Outcome
Muscle sympathetic nerve activity (MSNA) amplitude and onset latencysurrogate

Repetitive static quadriceps contractions increase muscle sympathetic nerve activity amplitude, suggesting chemical sensitization of mechanically sensitive afferents.

Abstract

We examined muscle sympathetic nerve activity (MSNA) in the nonexercising lower limb during repetitive static quadriceps contraction paradigm at 25% maximal voluntary contraction in eight men. Subjects performed 20-s contractions with 5-s rest periods for up to 12 contractions. Although the workload was constant, we found that MSNA amplitude rose as a function of contraction number 0.6 ln (amplitude/min)/contraction; this suggests chemical sensitization of the muscle reflex response. We employed signal-averaging techniques and then integrated the data to examine the onset latency of the MSNA response as a function of the 25-s contraction-rest period. We observed an onset latency of approximately 4-6 s. Moreover, although the onset latency did not appear to vary as a function of contraction number, the rate of MSNA increase took approximately four contractions to reach a steady-state rate of rise; this suggests contraction-induced sensitization. The onset latency reported here is similar to findings in recent animal studies, but it is at odds with latencies determined in prior human handgrip contraction studies. We believe our data suggest that 1) mechanically sensitive afferents contribute importantly to the MSNA response to the paradigm employed and 2) these afferents may be sensitized by the chemical products of muscle contraction.

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Cite This Study

Herr et al. (1999) studied this question.

synapsesocial.com/papers/6a83376ba250d11ff44cdfc0https://doi.org/10.1152/jappl.1999.86.2.767
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Also Consider

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  5. 5Sympathetic nerve discharge is coupled to muscle cell pH during exercise in humans.1988 · 342 citations