首页> 美国卫生研究院文献>American Journal of Physiology - Heart and Circulatory Physiology >Transfer function characteristics of the neural and peripheral arterial baroreflex arcs at rest and during postexercise muscle ischemia in humans
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Transfer function characteristics of the neural and peripheral arterial baroreflex arcs at rest and during postexercise muscle ischemia in humans

机译:人体静止和运动后肌肉缺血期间神经和外周动脉压力反射弧的传递函数特征

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摘要

Previous studies have demonstrated an increase in the arterial baroreflex (ABR) control of muscle sympathetic nerve activity (MSNA) during isolated activation of the muscle metaboreflex with postexercise muscle ischemia (PEMI). However, the increased ABR-MSNA control does not appear to manifest in an enhancement in the ABR control of arterial blood pressure (BP), suggesting alterations in the transduction of MSNA into a peripheral vascular response and a subsequent ABR-mediated change in BP. Thus we examined the operating gains of the neural and peripheral arcs of the ABR and their interactive relationship at rest and during muscle metaboreflex activation. In nine healthy subjects, graded isolation of the muscle metaboreflex was achieved by PEMI following isometric handgrip performed at 15% and 30% maximal voluntary contraction (MVC). To obtain the sensitivities of the ABR neural and peripheral arcs, the transfer function gain from BP to MSNA and MSNA to femoral vascular conductance, respectively, was analyzed. No changes from rest were observed in the ABR neural or peripheral arcs during PEMI after 15% MVC handgrip. However, PEMI following 30% MVC handgrip increased the low frequency (LF) transfer function gain between BP and MSNA (ABR neural arc; +58 ± 28%, P = 0.036), whereas the LF gain between MSNA and femoral vascular conductance (ABR peripheral arc) was decreased from rest (−36 ± 8%, P = 0.017). These findings suggest that during high-intensity muscle metaboreflex activation an increased ABR gain of the neural arc appears to offset an attenuation of the peripheral arc gain to help maintain the overall ABR control of systemic BP.
机译:先前的研究表明,在运动后肌肉缺血(PEMI)引起的肌肉代谢反射的单独激活过程中,对肌肉交感神经活动(MSNA)的动脉压力反射(ABR)控制有所增加。但是,增加的ABR-MSNA控制似乎并未表现出对动脉血压(BP)的ABR控制的增强,这暗示了MSNA向外周血管反应的转导改变以及随后的ABR介导的BP变化。因此,我们检查了ABR的神经和外围弧的操作增益以及它们在静止和肌肉代谢反射激活期间的交互关系。在9名健康受试者中,等距握力分别在15%和30%最大自愿收缩(MVC)的情况下通过PEMI实现了肌肉代谢反射的分级隔离。为了获得ABR神经和周围弧的敏感性,分别分析了从BP到MSNA和MSNA到股血管电导的传递函数增益。 15%MVC握持后,PEMI期间在ABR神经或外围弧中未观察到休息状态的变化。但是,在30%的MVC握持力之后,PEMI增加了BP和MSNA之间的低频(LF)传递函数增益(ABR神经弧; +58±28%,P = 0.036),而MSNA和股血管电导之间的LF增益(ABR)休息时弧度降低(-36±8%,P = 0.017)。这些发现表明,在高强度肌肉代谢反射激活过程中,神经弧的ABR增益增加似乎抵消了外周弧增益的衰减,从而有助于维持全身性BP的总体ABR控制。

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