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一种基于网络的心脏电生理模拟器,具有逼真的信号生成和对起搏操作的响应。

A Network-based Cardiac Electrophysiology Simulator with Realistic Signal Generation and Response to Pacing Maneuvers.

作者信息

Iravanian Shahriar, Uzelac Ilija, Kaboudian Abouzar, Langberg Jonathan, Fenton Flavio

机构信息

Division of Cardiology, Emory University, Atlanta, GA, USA.

School of Physics, Georgia Tech, Atlanta, GA, USA.

出版信息

Comput Cardiol (2010). 2021 Sep;48. doi: 10.23919/cinc53138.2021.9662834. Epub 2022 Jan 10.

Abstract

Diagnosis and localization of cardiac arrhythmias, especially supraventricular tachycardia (SVT), by inspecting intracardiac signals and performing pacing maneuvers is the core of electrophysiology studies. Acquiring and maintaining complex skill sets can be facilitated by using simulators, allowing the operator to practice in a safe and controlled setting. An electrophysiology simulator should not only display arrhythmias but it has to respond to the user's arbitrary inputs. While, in principle, it is possible to model the heart using a detailed anatomical and cellular model, such a system would be unduly complex and computationally intensive. In this paper, we describe a freely available web-based electrophysiology simulator (http://svtsim.com), which is composed of a visualization/interface unit and a heart model based on a dynamical network. In the network, nodes represent the points of interest, such as the sinus and the atrioventricular nodes, and links model the conduction system and pathways. The dynamics are encoded explicitly in the state machines attached to the nodes and links. Simulated intracardiac signals and surface ECGs are generated from the internal state of the heart model. Reentrant tachycardias, especially various forms of SVT, can emerge in this system in response to the user's actions in the form of pacing maneuvers. Additionally, the resulting arrhythmias respond realistically to various inputs, such as overdrive pacing and delivery of extra stimuli, cardioversion, ablation, and infusion of medications. For nearly a decade, svtsim.com has been used successfully to train electrophysiology practitioners in many institutions. We will present our experience regarding best practices in designing and using electrophysiology simulators for training and testing. We will also discuss the current trends in clinical cardiac electrophysiology and the anticipated next generation electrophysiology simulators.

摘要

通过检查心内信号和进行起搏操作来诊断和定位心律失常,尤其是室上性心动过速(SVT),是电生理研究的核心。使用模拟器有助于获取和维持复杂的技能组合,使操作者能够在安全且可控的环境中进行练习。电生理模拟器不仅应显示心律失常,还必须对用户的任意输入做出响应。原则上,使用详细的解剖和细胞模型来模拟心脏是可行的,但这样的系统会过于复杂且计算量巨大。在本文中,我们描述了一个免费的基于网络的电生理模拟器(http://svtsim.com),它由一个可视化/接口单元和一个基于动态网络的心脏模型组成。在该网络中,节点代表感兴趣的点,如窦房结和房室结,链接则模拟传导系统和路径。动力学在附加到节点和链接的状态机中明确编码。模拟的心内信号和体表心电图由心脏模型的内部状态生成。在这个系统中,响应于用户以起搏操作形式的动作,可出现折返性心动过速,尤其是各种形式的SVT。此外,所产生的心律失常会对各种输入做出逼真的反应,如超速起搏和额外刺激的发放、心脏复律、消融以及药物输注。近十年来,svtsim.com已成功用于许多机构培训电生理从业者。我们将介绍在设计和使用电生理模拟器进行培训和测试方面的最佳实践经验。我们还将讨论临床心脏电生理的当前趋势以及下一代电生理模拟器的预期情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad88/9228610/e85b34a2497e/nihms-1815723-f0001.jpg

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