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基于惠更斯原理的等效生物电源直接估计

Direct Estimation of Equivalent Bioelectric Sources Based on Huygens' Principle.

作者信息

Theodosiadou Georgia, Arnaoutoglou Dimitrios G, Nannis Ioannis, Katsimentes Sotirios, Sirakoulis Georgios Ch, Kyriacou George A

机构信息

Department of Electrical and Computer Engineering, Democritus University of Thrace, 67100 Xanthi, Greece.

出版信息

Bioengineering (Basel). 2023 Sep 9;10(9):1063. doi: 10.3390/bioengineering10091063.

Abstract

An estimation of the electric sources in the heart was conducted using a novel method, based on Huygens' Principle, aiming at a direct estimation of equivalent bioelectric sources over the heart's surface in real time. The main scope of this work was to establish a new, fast approach to the solution of the inverse electrocardiography problem. The study was based on recorded electrocardiograms (ECGs). Based on Huygens' Principle, measurements obtained from the surfaceof a patient's thorax were interpolated over the surface of the employed volume conductor model and considered as secondary Huygens' sources. These sources, being non-zero only over the surface under study, were employed to determine the weighting factors of the eigenfunctions' expansion, describing the generated voltage distribution over the whole conductor volume. With the availability of the potential distribution stemming from measurements, the electromagnetics reciprocity theorem is applied once again to yield the equivalent sources over the pericardium. The methodology is self-validated, since the surface potentials calculated from these equivalent sources are in very good agreement with ECG measurements. The ultimate aim of this effort is to create a tool providing the equivalent epicardial voltage or current sources in real time, i.e., during the ECG measurements with multiple electrodes.

摘要

采用一种基于惠更斯原理的新方法对心脏中的电源进行了估计,旨在实时直接估计心脏表面的等效生物电源。这项工作的主要范围是建立一种新的、快速解决逆心电图问题的方法。该研究基于记录的心电图(ECG)。基于惠更斯原理,从患者胸部表面获得的测量值在所用体积导体模型的表面上进行插值,并被视为二次惠更斯源。这些仅在研究表面非零的源用于确定本征函数展开的加权因子,该因子描述了整个导体体积上产生的电压分布。由于有测量得到的电位分布,再次应用电磁互易定理来得出心包上的等效源。该方法是自我验证的,因为从这些等效源计算出的表面电位与心电图测量结果非常吻合。这项工作的最终目标是创建一种工具,能够实时提供等效心外膜电压或电流源,即在使用多个电极进行心电图测量期间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a458/10525174/6cdff94f6221/bioengineering-10-01063-g001.jpg

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