Models of Irreversible Electroporation: A Review and Initial Model Implementation

TEM Journal Pub Date : 2024-02-27 DOI:10.18421/tem131-54
Tihomir Georgiev, Kristina Bliznakova, Z. Bliznakov, Georgi Todorov
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Abstract

Cancer may affect any person. Amongst possible techniques to treat some cancers is ablation, through the use of the irreversible electroporation (IRE) as one of the methods. Medical University of Varna is implementing a project on irreversible electroporation aiming to develop a hardware prototype. The first step is review of existing models and the development of an own model, which will be used in the device prototyping. To find the existing models, we reviewed articles related to electroporation models. Based on the literature review, we developed own model, where we used open-source software OpenEP and Embarcadero C++. The review of the available literature publications indicates that initial models employed a simplified cell structure. Despite this simplicity, these models effectively reflected important characteristics of the cell behaviour and the interdependencies between field features and cells. Recent investigations created better models and optimized parameters for specific cases. The review models were used in the development of dedicated software application for simulation, visualization, and educational purposes in the field of IRE. Developed software application allows investigation of various IRE protocols. Experimental investigation of implemented models and software is undergoing. The software will allow further advancement in our capacity to explore and comprehend cellular dynamics.
不可逆电穿孔模型:回顾与初步模型实施
癌症可能影响任何人。在治疗某些癌症的可行技术中,消融是其中一种方法,即使用不可逆电穿孔技术(IRE)。瓦尔纳医科大学正在实施一个不可逆电穿孔项目,旨在开发一个硬件原型。第一步是审查现有模型并开发自己的模型,该模型将用于设备原型开发。为了找到现有模型,我们查阅了与电穿孔模型相关的文章。根据文献综述,我们开发了自己的模型,其中使用了开源软件 OpenEP 和 Embarcadero C++。对现有文献出版物的审查表明,最初的模型采用了简化的细胞结构。尽管简单,但这些模型有效地反映了细胞行为的重要特征以及场特征和细胞之间的相互依存关系。最近的研究建立了更好的模型,并针对具体情况优化了参数。在开发用于 IRE 领域模拟、可视化和教育目的的专用软件应用程序时,使用了这些审查模型。开发的应用软件可用于研究各种 IRE 协议。目前正在对已实施的模型和软件进行实验研究。该软件将进一步提高我们探索和理解细胞动力学的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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