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A definition of normovolaemia and consequences for cardiovascular control during orthostatic and environmental stress

机译:在体位性和环境压力下正常血容量的定义以及对心血管控制的后果

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摘要

The Frank–Starling mechanism describes the relationship between stroke volume and preload to the heart, or the volume of blood that is available to the heart—the central blood volume. Understanding the role of the central blood volume for cardiovascular control has been complicated by the fact that a given central blood volume may be associated with markedly different central vascular pressures. The central blood volume varies with posture and, consequently, stroke volume and cardiac output () are affected, but with the increased central blood volume during head-down tilt, stroke volume and do not increase further indicating that in the supine resting position the heart operates on the plateau of the Frank–Starling curve which, therefore, may be taken as a functional definition of normovolaemia. Since the capacity of the vascular system surpasses the blood volume, orthostatic and environmental stress including bed rest/microgravity, exercise and training, thermal loading, illness, and trauma/haemorrhage is likely to restrict venous return and . Consequently the cardiovascular responses are determined primarily by their effect on the central blood volume. Thus during environmental stress, flow redistribution becomes dependent on sympathetic activation affecting not only skin and splanchnic blood flow, but also flow to skeletal muscles and the brain. This review addresses the hypothesis that deviations from normovolaemia significantly influence these cardiovascular responses.
机译:弗兰克·史达琳(Frank–Starling)机制描述了卒中量和心脏预负荷之间的关系,或者说是心脏可利用的血液量-中央血液量。由于给定的中央血容量可能与明显不同的中央血管压力有关,因此了解中央血容量对心血管控制的作用变得很复杂。中心血液量随姿势而变化,因此,中风量和心输出量()受到影响,但随着头朝下倾斜过程中中心血量的增加,中风量不再增加,这表明在仰卧休息位置心脏在弗兰克-史达琳曲线的平台上进行,因此可以作为降血钙素血症的功能定义。由于血管系统的容量超过了血容量,因此包括卧床休息/微重力,运动和训练,热负荷,疾病和外伤/出血在内的体位和环境压力很可能会限制静脉回流。因此,心血管反应主要取决于它们对中央血容量的影响。因此,在环境压力下,血流的重新分布取决于交感神经的激活,不仅影响皮肤和内脏的血流,而且还影响骨骼肌和大脑的血流。这项审查提出了假说,与正常血容量的偏离会严重影响这些心血管反应。

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