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人体姿势快速变化对血液动力学影响中的交感反应作用。

Role of sympathetic responses on the hemodynamic consequences of rapid changes in posture in humans.

机构信息

Department of Integrative Physiology, The University of Iowa, Iowa City, IA 52245, USA.

出版信息

J Appl Physiol (1985). 2010 Mar;108(3):523-32. doi: 10.1152/japplphysiol.01185.2009. Epub 2010 Jan 7.

Abstract

Tolerance to +G(z) gravitational stress is reduced when +G(z) stress is preceded by exposure to hypogravity (fractional, 0, or negative G(z)). For example, there is an exaggerated fall in eye-level arterial pressure (ELAP) early on during +G(z) stress (head-up tilt; HUT) when this stress is immediately preceded by -G(z) stress (head-down tilt; HDT), termed the "push-pull effect." The aim of the present study was to test the hypothesis that sympathetic responses contribute to the push-pull effect. Young, healthy subjects (n = 7 males and 3 females) were subjected to 30 s of 30 degrees HUT from a horizontal position and to 30 s of 30 degrees HUT when HUT was immediately preceded by 20 s of -15 degrees HDT. Four bouts of HDT-HUT were alternated between five bouts of HUT in a counterbalanced design, and 1 min was allowed for recovery between tilts. This protocol was repeated during clonidine administration (2.5 microg/kg bolus over 30 min and then continuously at 0.36 microg x kg(-1) x h(-1)). Clonidine blunted the vasomotor responses to tilting, and this led to exaggerated changes in arterial pressure. Clonidine exerted little specific influence on the push-pull effect. Thus sympathetic responses appear neither to contribute to, nor protect against, the push-pull effect for the rate and duration of tilting imposed in the present study.

摘要

当超重(负 G(z))压力之前有暴露于低重力(部分、0 或负 G(z))时,对+G(z)重力压力的耐受能力会降低。例如,当这种压力立即被负 G(z)压力(头低位倾斜;HDT)之前时,眼睛水平动脉压(ELAP)会过早下降(头高位倾斜;HUT),这种现象被称为“推-拉效应”。本研究的目的是验证交感神经反应是否有助于推-拉效应的假说。年轻、健康的受试者(n=7 名男性和 3 名女性)接受 30 秒 30 度 HUT 从水平位置,以及 30 秒 30 度 HUT 当 HUT 立即被 20 秒 -15 度 HDT 之前。在平衡设计中,HDT-HUT 之间交替进行 4 个回合,在倾斜之间允许 1 分钟恢复。在可乐定给药期间重复该方案(30 分钟内 2.5 微克/千克弹丸,然后以 0.36 微克 x 千克(-1) x 小时(-1) 的速度连续给药)。可乐定减弱了倾斜的血管运动反应,这导致动脉压的变化夸大。可乐定对推-拉效应的影响很小。因此,在本研究中施加的倾斜速度和持续时间上,交感神经反应既不参与也不保护推-拉效应。

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