用于产生受控局部心外膜异质性的微型珀尔帖细胞阵列系统

Izan Segarra, Antonio Cebrian, Samuel Ruiperez-Campillo, Alvaro Tormos, Francisco Javier Chorro, Francisco Castells, Antonio Alberola, Jose Millet
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引用次数: 0

摘要

本研究旨在设计和制造一种能够在朗根多夫系统灌注的离体兔心脏心外膜表面产生异质性的系统。该系统由热电模块组成,可由开发的硬件独立控制,从而在心外膜表面产生温度梯度,导致类似病理异质性的传导减慢。通过建模和热模拟对系统的可行性进行了全面分析,并在巴伦西亚大学心脏电生理学实验室进行了初步测试,验证了系统的实用性。设计过程包括使用 Fusion 360 进行三维设计、使用 MATLAB/Simulink 绘制算法和框图、使用 LTSpice 和 Altium Designer 进行原理图捕捉和 PCB 设计,以及集成动物实验专用设备。临床相关性--所提议的系统旨在诱导局部心外膜异质性,以生成标记正确的信号,作为改进识别和描述纤维化基质的算法的黄金标准。这一改进将提高消融过程的效果,并有可能减少消融表面积。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mini Peltier Cell Array System for the Generation of Controlled Local Epicardial Heterogeneities.

The present study aims to design and fabricate a system capable of generating heterogeneities on the epicardial surface of an isolated rabbit heart perfused in a Langendorff system. The system consists of thermoelectric modules that can be independently controlled by the developed hardware, thereby allowing for the generation of temperature gradients on the epicardial surface, resulting in conduction slowing akin to heterogeneities of pathological origin. A comprehensive analysis of the system's viability was performed through modeling and thermal simulation, and its practicality was validated through preliminary tests conducted at the experimental cardiac electrophysiology laboratory of the University of Valencia. The design process involved the use of Fusion 360 for 3D designs, MATLAB/Simulink for algorithms and block diagrams, LTSpice and Altium Designer for schematic captures and PCB design, and the integration of specialized equipment for animal experimentation. The objective of the study was to efficiently capture epicardial recordings under varying conditions.Clinical relevance- The proposed system aims to induce local epicardial heterogeneities to generate labeled correct signals that can serve as a golden standard for improving algorithms that identify and characterize fibrotic substrates. This improvement will enhance the efficacy of ablation processes and potentially reduce the ablated surface area.

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