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生物阻抗分析作为一种血流动力学监测工具:概述、方法和挑战。

Bioimpedance analysis as a tool for hemodynamic monitoring: overview, methods and challenges.

机构信息

Institute of Biomedical Technologies, Auckland University of Technology, Auckland, New Zealand.

出版信息

Physiol Meas. 2021 Apr 6;42(3). doi: 10.1088/1361-6579/abe80e.

Abstract

Recent advances in hemodynamic monitoring have seen the advent of non-invasive methods which offer ease of application and improve patient comfort. Bioimpedance Analysis or BIA is one of the currently employed non-invasive techniques for hemodynamic monitoring. Impedance Cardiography (ICG), one of the implementations of BIA, is widely used as a non-invasive procedure for estimating hemodynamic parameters such as stroke volume (SV) and cardiac output (CO). Even though BIA is not a new diagnostic technique, it has failed to gain consensus as a reliable measure of hemodynamic parameters. Several devices have emerged for estimating CO using ICG which are based on evolving methodologies and techniques to calculate SV. However, the calculations are generally dependent on the electrode configurations (whole body, segmental or localised) as well as the accuracy of different techniques in tracking blood flow changes. Blood volume changes, concentration of red blood cells, pulsatile velocity profile and ambient temperature contribute to the overall conductivity of blood and hence its impedance response during flow. There is a growing interest in investigating limbs for localised BIA to estimate hemodynamic parameters such as pulse wave velocity. As such, this paper summarises the current state of hemodynamic monitoring through BIA in terms of different configurations and devices in the market. The conductivity of blood flow has been emphasized with contributions from both volume and velocity changes during flow. Recommendations for using BIA in hemodynamic monitoring have been mentioned highlighting the suitable range of frequencies (1 kHz-1 MHz) as well as safety considerations for a BIA setup. Finally, current challenges in using BIA such as geometry assumption and inaccuracies have been discussed while mentioning potential advantages of a multi-frequency analysis to cover all the major contributors to blood's impedance response during flow.

摘要

血流动力学监测的最新进展见证了非侵入性方法的出现,这些方法具有应用简便和提高患者舒适度的优点。生物阻抗分析(BIA)是目前用于血流动力学监测的非侵入性技术之一。阻抗心动描记术(ICG)是 BIA 的一种实现方式,被广泛用作估计血流动力学参数(如心搏量(SV)和心输出量(CO))的非侵入性程序。尽管 BIA 不是一种新的诊断技术,但它未能作为血流动力学参数的可靠测量手段达成共识。已经出现了几种使用 ICG 估计 CO 的设备,这些设备基于不断发展的方法和技术来计算 SV。然而,这些计算通常取决于电极配置(全身、分段或局部)以及不同技术在跟踪血流变化方面的准确性。血液体积变化、红细胞浓度、脉动速度分布和环境温度都会影响血液的整体导电性及其在流动过程中的阻抗响应。人们越来越有兴趣研究用于局部 BIA 的四肢,以估计血流动力学参数,如脉搏波速度。因此,本文总结了当前通过 BIA 进行血流动力学监测的不同配置和市场上的设备的现状。强调了血流的电导率,其中包括体积和速度变化对其的影响。文中提到了在血流动力学监测中使用 BIA 的建议,突出了合适的频率范围(1 kHz-1 MHz)以及 BIA 设置的安全性考虑因素。最后,讨论了当前在使用 BIA 方面的挑战,如几何假设和不准确性,并提到了多频分析的潜在优势,以涵盖血流阻抗响应过程中的所有主要贡献者。

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