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首页> 外文期刊>Acta astronautica >Hemodynamic And Neurohormonal Responses To Extreme Orthostaticstress In Physically Fit Young Adults
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Hemodynamic And Neurohormonal Responses To Extreme Orthostaticstress In Physically Fit Young Adults

机译:身体健康的年轻人对极端体位压力的血流动力学和神经激素反应

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摘要

Blood pressure stability may be jeopardized in astronauts experiencing orthostatic stress. There is disagreement about cardiovascular and endocrine stress responses that emerge when a critical (presyncopal) state is reached. We studied hemodynamic and neurohormonal changes as induced by an orthostatic stress paradigm (head-up tilt combined with lower body negative pressure) that leads to a syncopal endpoint. From supine control to presyncope, heart rate increased by 78% and thoracic impedance by 12%. There was a 49% fall in stroke volume index, 19% in mean arterial blood pressure, 14% in total peripheral resistance index and 11% in plasma volume. Plasma norepinephrine rose by 107, epinephrine by 491, plasma renin activity by 167, and cortisol by 25%. Hemodynamic and hormonal changes of clearly different magnitude emerge in presyncope as compared to supine rest. Additional studies are warranted to reveal the exact time course of orthostatic changes up to syncopal levels.
机译:患有体位性压力的宇航员可能会损害血压稳定性。关于达到临界(晕厥前)状态时出现的心血管和内分泌应激反应,存在分歧。我们研究了直立应力范例(抬头倾斜结合下半身负压)导致晕厥终点的血流动力学和神经激素变化。从仰卧控制到晕厥前,心率增加78%,胸阻抗增加12%。脑卒中体积指数下降49%,平均动脉血压下降19%,总外周阻力指数下降14%,血浆体积下降11%。血浆去甲肾上腺素上升107,肾上腺素上升491,血浆肾素活性上升167,皮质醇上升25%。与仰卧休息相比,晕厥前的血流动力学和激素变化明显不同。必须进行其他研究才能揭示直至晕厥水平的体位改变的确切时间过程。

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