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射频消融的理论建模:现状与未来挑战。

Theoretical modeling for radiofrequency ablation: state-of-the-art and challenges for the future.

作者信息

Berjano Enrique J

机构信息

Center for Research and Innovation on Bioengineering, Valencia Polytechnic University, Camino de Vera s/n, 46022 Valencia, Spain.

出版信息

Biomed Eng Online. 2006 Apr 18;5:24. doi: 10.1186/1475-925X-5-24.

Abstract

Radiofrequency ablation is an interventional technique that in recent years has come to be employed in very different medical fields, such as the elimination of cardiac arrhythmias or the destruction of tumors in different locations. In order to investigate and develop new techniques, and also to improve those currently employed, theoretical models and computer simulations are a powerful tool since they provide vital information on the electrical and thermal behavior of ablation rapidly and at low cost. In the future they could even help to plan individual treatment for each patient. This review analyzes the state-of-the-art in theoretical modeling as applied to the study of radiofrequency ablation techniques. Firstly, it describes the most important issues involved in this methodology, including the experimental validation. Secondly, it points out the present limitations, especially those related to the lack of an accurate characterization of the biological tissues. After analyzing the current and future benefits of this technique it finally suggests future lines and trends in the research of this area.

摘要

射频消融是一种介入技术,近年来已被应用于非常不同的医学领域,如消除心律失常或破坏不同部位的肿瘤。为了研究和开发新技术,并改进目前使用的技术,理论模型和计算机模拟是一种强大的工具,因为它们能快速且低成本地提供有关消融电学和热学行为的重要信息。未来,它们甚至可以帮助为每个患者制定个性化治疗方案。本综述分析了应用于射频消融技术研究的理论建模的最新进展。首先,它描述了该方法中涉及的最重要问题,包括实验验证。其次,它指出了目前的局限性,特别是那些与生物组织缺乏准确表征相关的局限性。在分析了该技术当前和未来的益处之后,它最终提出了该领域研究的未来方向和趋势。

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