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由头高脚低位倾斜转为平卧位时的逆行动脉下肢血流:动脉压变化时电容流的重要性。

Retrograde arterial leg blood flow during tilt-back from a head-up posture: importance of capacitive flows when arterial pressure changes.

机构信息

1Department of Integrative Physiology, The University of Iowa, Iowa City, IA 52242, USA.

出版信息

J Appl Physiol (1985). 2010 Mar;108(3):533-7. doi: 10.1152/japplphysiol.01184.2009. Epub 2010 Jan 7.

Abstract

The windkessel function of the arterial system converts the intermittent action of the heart into more continuous microcirculatory blood flow during diastole via the return of elastic energy stored in the walls of the arteries during systole. Might the same phenomenon occur regionally within the arterial system during tilting owing to regional differences in local arterial pressure imposed by gravity? We sought to test the hypothesis that during tilt-back from a head-up posture, the return of stored elastic energy in leg arteries would work to slow, or perhaps transiently reverse, the flow of blood in the femoral artery. Femoral artery blood flow and arterial pressure were recorded during tilt back from a 30 degrees head-up posture to supine (approximately 0.5 G) in young, healthy subjects (n = 7 males and 3 females) before and during clonidine infusion. During control (no drug) conditions femoral artery blood flow ceased for an entire heart beat during tilt-back. During clonidine infusion femoral artery blood flow reversed for at least one entire heart beat during tilt-back, i.e., blood flow in the retrograde direction in the femoral artery from the leg into the abdomen. Thus substantial capacitive effects of tilting on leg blood flow occur in humans during mild changes in posture.

摘要

动脉系统的风箱功能通过在舒张期将心脏的间歇性作用转换为更连续的微循环血流,从而利用在收缩期间动脉壁中存储的弹性能量的返回。由于重力对局部动脉压力的区域差异,在倾斜期间动脉系统内是否会在区域内发生相同的现象?我们试图检验以下假设:在从仰卧位开始倾斜时,腿部动脉中存储的弹性能量的返回将使股动脉中的血流减慢,或者可能暂时逆转。在倾斜回位之前和期间,年轻健康的受试者(n = 7 名男性和 3 名女性)在从 30 度仰卧位开始倾斜回位至仰卧位(约 0.5 G)时记录股动脉血流和动脉压。在对照(无药物)条件下,股动脉血流在倾斜回位期间完全停止了一个心跳周期。在可乐定输注期间,股动脉血流在倾斜回位期间至少反转了一个完整的心跳周期,即股动脉中的血流从腿部向腹部逆行。因此,在轻度姿势变化期间,人体倾斜对腿部血流产生了大量的电容效应。

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