首页> 外文期刊>American Journal of Physiology >Modulation of arterial baroreflex control of muscle sympathetic nerve activity by muscle metaboreflex in humans.
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Modulation of arterial baroreflex control of muscle sympathetic nerve activity by muscle metaboreflex in humans.

机译:人体肌肉反射反射对动脉交感神经控制肌肉交感神经活动的调节。

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We aimed to investigate the interaction [with respect to the regulation of muscle sympathetic nerve activity (MSNA) and blood pressure] between the arterial baroreflex and muscle metaboreflex in humans. In 10 healthy subjects who performed a 1-min sustained handgrip exercise at 50% maximal voluntary contraction followed by forearm occlusion, arterial baroreflex control of MSNA (burst incidence and strength and total activity) was evaluated by analyzing the relationship between beat-by-beat spontaneous variations in diastolic arterial blood pressure (DAP) and MSNA both during supine rest (control) and during postexercise muscle ischemia (PEMI). During PEMI (vs. control), 1) the linear relationship between burst incidence and DAP was shifted rightward with no alteration in sensitivity, 2) the linear relationship between burst strength and DAP was shifted rightward and upward with no change in sensitivity, and 3) the linear relationship between total activity and DAP was shifted to a higher blood pressureand its sensitivity was increased. The modification of the control of total activity that occurs in PEMI could be a consequence of alterations in the baroreflex control of both MSNA burst incidence and burst strength. These results suggest that the arterial baroreflex and muscle metaboreflex interact to control both the occurrence and strength of MSNA bursts.
机译:我们旨在研究人的动脉压力反射和肌肉代谢反射之间的相互作用[关于肌肉交感神经活性(MSNA)和血压的调节]。在10名健康受试者中,他们以50%最大自愿收缩量进行1分钟持续握力运动,然后前臂闭塞,通过分析逐次搏动之间的关系来评估MSNA的动脉压力反射控制(爆发发生率,力量和总活动)仰卧休息(对照)和运动后肌肉缺血(PEMI)期间舒张期动脉血压(DAP)和MSNA的自发变化。在PEMI(与对照相比)中,1)猝发发生率和DAP之间的线性关系向右移动,而灵敏度没有变化; 2)猝发强度与DAP之间的线性关系向右和向上移动,而灵敏度没有变化,以及3 )总活性与DAP之间的线性关系转变为较高的血压,其敏感性增加。发生在PEMI中的总活动控制的修改可能是MSNA爆发发生率和爆发强度的压力反射控制改变的结果。这些结果表明,动脉压力反射和肌肉代谢反射相互作用以控制MSNA爆发的发生和强度。

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