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用于分析血液透析相关心脏电生理效应的人类心房细胞模型:研究进展

Human atrial cell models to analyse haemodialysis-related effects on cardiac electrophysiology: work in progress.

作者信息

Passini Elisa, Genovesi Simonetta, Severi Stefano

机构信息

Computational Physiopathology Unit, Department of Electrical, Electronic, and Information Engineering, University of Bologna, Via Venezia 52, 47521 Cesena, Italy.

Department of Health Sciences, University of Milano Bicocca, Via Cadore 48, 20900 Monza, Italy.

出版信息

Comput Math Methods Med. 2014;2014:291598. doi: 10.1155/2014/291598. Epub 2014 Dec 23.

Abstract

During haemodialysis (HD) sessions, patients undergo alterations in the extracellular environment, mostly concerning plasma electrolyte concentrations, pH, and volume, together with a modification of sympathovagal balance. All these changes affect cardiac electrophysiology, possibly leading to an increased arrhythmic risk. Computational modeling may help to investigate the impact of HD-related changes on atrial electrophysiology. However, many different human atrial action potential (AP) models are currently available, all validated only with the standard electrolyte concentrations used in experiments. Therefore, they may respond in different ways to the same environmental changes. After an overview on how the computational approach has been used in the past to investigate the effect of HD therapy on cardiac electrophysiology, the aim of this work has been to assess the current state of the art in human atrial AP models, with respect to the HD context. All the published human atrial AP models have been considered and tested for electrolytes, volume changes, and different acetylcholine concentrations. Most of them proved to be reliable for single modifications, but all of them showed some drawbacks. Therefore, there is room for a new human atrial AP model, hopefully able to physiologically reproduce all the HD-related effects. At the moment, work is still in progress in this specific field.

摘要

在血液透析(HD)过程中,患者的细胞外环境会发生改变,主要涉及血浆电解质浓度、pH值和血容量,同时交感迷走神经平衡也会发生变化。所有这些变化都会影响心脏电生理,可能导致心律失常风险增加。计算建模有助于研究HD相关变化对心房电生理的影响。然而,目前有许多不同的人类心房动作电位(AP)模型,所有这些模型都仅在实验中使用的标准电解质浓度下得到验证。因此,它们可能对相同的环境变化有不同的反应。在概述了过去如何使用计算方法来研究HD治疗对心脏电生理的影响之后,这项工作的目的是评估在HD背景下人类心房AP模型的当前技术水平。所有已发表的人类心房AP模型都已针对电解质、血容量变化和不同乙酰胆碱浓度进行了考虑和测试。其中大多数模型在单一变化方面被证明是可靠的,但它们都存在一些缺点。因此,有必要建立一个新的人类心房AP模型,有望能够在生理上重现所有与HD相关的效应。目前,该特定领域的工作仍在进行中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26d9/4284940/f87346093ed5/CMMM2014-291598.001.jpg

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