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Computer based real time systems for analyzing cardiovascular response to orthostatic stress

机译:基于计算机的实时系统,用于分析心血管反应的直向性应力

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The cardiovascular response to orthostatic (gravitational) stress has been the focus of several researches in the past. Average values of hemodynamic variables, such as arterial pressure or heart rate are recorded during changes in posture for diagnosing orthostatic stress clinically. Different methods based on varied physical principles have been developed to measure these hemodynamic variables. Carotid artery is responsible for direction of blood flow to brain and provides a vital physiological parameter which can be used to construe cardiac information. A noninvasive system has been built in which a piezoelectric sensor is positioned on the carotid artery of the subject and carotid signals of fifteen human subjects are acquired in various body postures using application softwares. RR intervals and pulse amplitudes are computed after filtering and analyzing the carotid signal recordings using these softwares. The developed system is validated by determining the percentage change in RR interval and pulse amplitude of all the subjects which is found almost same. The technique used in the proposed system may be applied to measure and manage the orthostatic stress. (C) 2015 Nalecz Institute of Biocybernetics and Biomedical Engineering. Published by Elsevier Sp. z o.o.. All rights reserved.
机译:对原位(引力)压力的心血管反应是过去几种研究的重点。在术后诊断直向性应力的姿势变化期间记录血流动力变量的平均值,例如动脉压或心率。已经开发出基于各种物理原理的不同方法来测量这些血液动力学变量。颈动脉负责血液流向脑的方向,并提供一种重要的生理参数,可用于解除心脏信息。已经建立了一种非侵入式系统,其中压电传感器位于使用应用软件的各种身体姿势中获取十五人受试者的颈动脉和颈动脉信号。在过滤和分析使用这些软件的情况下,计算RR间隔和脉冲幅度。通过确定几乎相同的所有对象的RR间隔和脉冲幅度的RR间隔和脉冲幅度的百分比来验证开发系统。所提出的系统中使用的技术可以应用于测量和管理原位应力。 (c)2015年纳雷斯省生物庭院研究所和生物医学工程研究所。由elsevier sp发布。 z o.o ..保留所有权利。

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