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运动训练对皮肤血流控制的影响:皮肤血管适应性如何适应?

Changes in the control of skin blood flow with exercise training: where do cutaneous vascular adaptations fit in?

机构信息

Department of Biomedical Sciences, University of Missouri, Columbia, MO 65211, USA.

出版信息

Exp Physiol. 2011 Sep;96(9):822-8. doi: 10.1113/expphysiol.2010.056176. Epub 2011 May 20.

Abstract

Heat is the most abundant byproduct of cellular metabolism. As such, dynamic exercise in which a significant percentage of muscle mass is engaged generates thermoregulatory demands that are met in part by increases in skin blood flow. Increased skin blood flow during exercise adds to the demands on cardiac output and confers additional circulatory strain beyond that associated with perfusion of active muscle alone. Endurance exercise training results in a number of physiological adaptations which ultimately reduce circulatory strain and shift thermoregulatory control of skin blood flow to higher levels of blood flow for a given core temperature. In addition, exercise training induces peripheral vascular adaptations within the cutaneous microvasculature indicative of enhanced endothelium-dependent vasomotor function. However, it is not currently clear how (or if) these local vascular adaptations contribute to the beneficial changes in thermoregulatory control of skin blood flow following exercise training. The purpose of this Hot Topic Review is to synthesize the literature pertaining to exercise training-mediated changes in cutaneous microvascular reactivity and thermoregulatory control of skin blood flow. In addition, we address mechanisms driving changes in cutaneous microvascular reactivity and thermoregulatory control of skin blood flow, and pose the question: what (if any) is the functional role of increased cutaneous microvascular reactivity following exercise training?

摘要

热量是细胞代谢产生的最丰富的副产品。因此,参与大量肌肉的动力性运动产生了热调节需求,这些需求部分通过增加皮肤血流量来满足。运动过程中皮肤血流量的增加增加了对心输出量的需求,并带来了除了单独灌注活跃肌肉之外的额外循环压力。耐力运动训练会导致许多生理适应,最终降低循环压力,并将皮肤血流量的热调节控制转移到给定核心温度下更高的血流量。此外,运动训练会引起皮肤微血管中的外周血管适应,表明内皮依赖性血管舒缩功能增强。然而,目前尚不清楚(或如果)这些局部血管适应如何有助于运动训练后皮肤血流量的热调节控制的有益变化。本热点综述的目的是综合与运动训练介导的皮肤微血管反应性和皮肤血流量的热调节控制变化相关的文献。此外,我们还探讨了驱动皮肤微血管反应性和皮肤血流量的热调节控制变化的机制,并提出了一个问题:运动训练后增加皮肤微血管反应性的功能作用是什么(如果有的话)?

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本文引用的文献

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Skin microvascular reactivity in trained adolescents.训练有素的青少年的皮肤微血管反应性。
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