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首页> 外文期刊>Clinical physiology >Segmental composition of whole-body impedance cardiogram estimated by computer simulations and clinical experiments.
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Segmental composition of whole-body impedance cardiogram estimated by computer simulations and clinical experiments.

机译:通过计算机模拟和临床实验估算的全身阻抗心电图的节段组成。

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摘要

Whole-body impedance cardiography (ICGWB) has been proposed as a feasible means of measuring cardiac output (CO). However, the source distribution of heart-related impedance variations in the whole body is not known. To establish how much of a signal originates in each segment of the body and what the contribution of each is to stroke volume (SV) in ICGWB, impedance in the extremities and trunk were investigated in 15 healthy volunteers. In addition, the theoretical measurement properties of ICGWB were studied using a computer model of the whole-body anatomy as a volume conductor. The model confirmed the expected result that most of the basal impedance originates from the extremities. Clinical experiments revealed that the heart-related amplitude variations in the ICGWB signal originate more evenly from various body segments, the trunk slightly more than the arms or legs. The heart-related ICGWB signal represents a weighted sum of segmental pulsatile events in the body yielding physiologically meaningful data on almost the whole circulatory system.
机译:已提出全身阻抗心动图(ICGWB)作为测量心输出量(CO)的可行方法。但是,人体中与心脏有关的阻抗变化的来源分布尚不清楚。为了确定有多少信号起源于身体的每个部分以及每个信号对ICGWB中的中风量(SV)的贡献,在15名健康志愿者中研究了四肢和躯干的阻抗。另外,使用全身解剖学作为体积导体的计算机模型研究了ICGWB的理论测量特性。该模型证实了预期的结果,即大部分基础阻抗都来自四肢。临床实验表明,ICGWB信号中与心脏相关的幅度变化更均匀地起源于各个身体部位,躯干略多于手臂或腿。心脏相关的ICGWB信号代表体内分段脉动事件的加权总和,可在几乎整个循环系统上产生具有生理意义的数据。

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