首页> 外文期刊>American Journal of Physiology >Time course of forearm arterial compliance changes during reactive hyperemia.
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Time course of forearm arterial compliance changes during reactive hyperemia.

机译:反应性充血期间前臂动脉顺应性的时程改变。

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摘要

Ultrasonic studies have shown that arterial compliance increases after prolonged ischemia. The objective of the present study was to develop an alternative plethysmographic method to investigate compliance, exploring validity and clinical applicability. Forearm pulse volume (FPV) and blood pressure (BP) were used to establish the FPV-BP relationship. Forearm arterial compliance (FAC) was measured, and the area under the FAC-BP curve (FAC(AUC)) was determined. The time course curve of compliance changes during reactive hyperemia was obtained by continuous measurements of FAC(AUC) for 20 s before and for 300 s after arterial occlusion. This technique allows us to effectively assess compliance changes during reactive hyperemia. Furthermore, the selected measurement protocol indicated the necessity for continuous measurements to detect "true" maximal FAC(AUC) changes. On multivariate analysis, preischemic FAC(AUC) was mainly affected by sex, peak FAC(AUC) was affected by sex and systolic BP, percent changes were affected by plasma high-density and low-density lipoprotein cholesterol, peak time was affected by age and body mass index, and descent time was affected by plasma triglyceride levels. The proposed technique is highly sensitive and well comparable with the generally accepted echotracking system. It may thus be considered as an alternative tool to detect and monitor compliance changes induced by arterial occlusion.
机译:超声研究表明,长期缺血后动脉顺应性增加。本研究的目的是开发另一种体积描记法,以调查依从性,探索有效性和临床适用性。使用前臂脉搏量(FPV)和血压(BP)建立FPV-BP关系。测量前臂动脉顺应性(FAC),并确定FAC-BP曲线下的面积(FAC(AUC))。反应性充血过程中顺应性变化的时程曲线是通过连续测量动脉阻塞前20 s和动脉阻塞后300 s的FAC(AUC)得出的。该技术使我们能够有效评估反应性充血期间的依从性变化。此外,所选的测量协议表明必须进行连续测量以检测“真正的”最大FAC(AUC)变化。在多变量分析中,缺血前FAC(AUC)主要受性别影响,峰值FAC(AUC)受性别和收缩压影响,百分比变化受血浆高密度和低密度脂蛋白胆固醇影响,高峰时间受年龄影响和体重指数以及下降时间受血浆甘油三酸酯水平的影响。所提出的技术是高度灵敏的,并且与普遍接受的回声跟踪系统相当。因此,可以将其视为检测和监视由动脉闭塞引起的顺应性变化的替代工具。

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