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November 12, 2005AJP Heart and Circulatory Physiology72 citations

Time-dependent modulation of arterial baroreflex control of muscle sympathetic nerve activity during isometric exercise in humans

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MIMasashi IchinoseMSMitsuru SaitoNKNarihiko Kondo

Key Result

Isometric handgrip exercise modulates arterial baroreflex control of muscle sympathetic nerve activity in a time-dependent manner, with progressive rightward and upward shifts in DAP-MSNA relations.

Structured PICO

How is arterial baroreflex control of muscle sympathetic nerve activity modulated during isometric exercise in healthy subjects?

P
Population
13 healthy subjects undergoing isometric handgrip exercise and postexercise muscle ischemia.
E
Exposure
3-min isometric handgrip exercise (IHG) at 30% maximal voluntary contraction, followed by a period of imposed postexercise muscle ischemia (PEMI)
C
Comparator
Supine rest
O
Outcome
Arterial baroreflex (ABR) control of muscle sympathetic nerve activity (MSNA) (burst incidence, strength, and total activity) evaluated by the relationship between spontaneous variations in diastolic arterial pressure (DAP) and MSNAsurrogate

Arterial baroreflex control of muscle sympathetic nerve activity is modulated in a time-dependent manner during isometric exercise, which may underlie the progressive increase in blood pressure and sympathetic activity.

Abstract

We investigated the time-dependent modulation of arterial baroreflex (ABR) control of muscle sympathetic nerve activity (MSNA) that occurs during isometric handgrip exercise (IHG). Thirteen healthy subjects performed a 3-min IHG at 30% maximal voluntary contraction, which was followed by a period of imposed postexercise muscle ischemia (PEMI). The ABR control of MSNA (burst incidence and strength and total activity) was evaluated by analyzing the relationship between spontaneous variations in diastolic arterial pressure (DAP) and MSNA during supine rest, at each minute of IHG, and during PEMI. We found that 1) the linear relations between DAP and MSNA variables were shifted progressively rightward until the third minute of IHG (IHG3); 2) 2 min into IHG (IHG2), the DAP-MSNA relations were shifted upward and were shifted further upward at IHG3; 3) the sensitivity of the ABR control of total MSNA was increased at IHG2 and increased further at IHG3; and 4) during PEMI, the ABR operating pressure was slightly higher than at IHG2, and the sensitivity of the control of total MSNA was the same as at IHG2. During PEMI, the DAP-burst strength and DAP-total MSNA relations were shifted downward from the IHG3 level to the IHG2 level, whereas the DAP-burst incidence relation remained at the IHG3 level. These results indicate that during IHG, ABR control of MSNA is modulated in a time-dependent manner. We suggest that this modulation of ABR function is one of the mechanisms underlying the progressive increase in blood pressure and MSNA during the course of isometric exercise.

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Cite This Study

Ichinose et al. (2005) studied Healthy (n=13). Isometric handgrip exercise (IHG) and postexercise muscle ischemia (PEMI) vs. Supine rest was evaluated on Arterial baroreflex (ABR) control of muscle sympathetic nerve activity (MSNA). Isometric handgrip exercise modulates arterial baroreflex control of muscle sympathetic nerve activity in a time-dependent manner, with progressive rightward and upward shifts in DAP-MSNA relations.

synapsesocial.com/papers/6a1fe8bfc705fa157d0d9e34https://doi.org/10.1152/ajpheart.00847.2005
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Also Consider

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