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生物物质中电场的温度调节。

Temperature modulation of electric fields in biological matter.

机构信息

Department of Mechanical Engineering, University of California, Berkeley, California, United States of America.

出版信息

PLoS One. 2011;6(6):e20877. doi: 10.1371/journal.pone.0020877. Epub 2011 Jun 13.

Abstract

Pulsed electric fields (PEF) have become an important minimally invasive surgical technology for various applications including genetic engineering, electrochemotherapy and tissue ablation. This study explores the hypothesis that temperature dependent electrical parameters of tissue can be used to modulate the outcome of PEF protocols, providing a new means for controlling and optimizing this minimally invasive surgical procedure. This study investigates two different applications of cooling temperatures applied during PEF. The first case utilizes an electrode which simultaneously delivers pulsed electric fields and cooling temperatures. The subsequent results demonstrate that changes in electrical properties due to temperature produced by this configuration can substantially magnify and confine the electric fields in the cooled regions while almost eliminating electric fields in surrounding regions. This method can be used to increase precision in the PEF procedure, and eliminate muscle contractions and damage to adjacent tissues. The second configuration considered introduces a third probe that is not electrically active and only applies cooling boundary conditions. This second study demonstrates that in this probe configuration the temperature induced changes in electrical properties of tissue substantially reduce the electric fields in the cooled regions. This novel treatment can potentially be used to protect sensitive tissues from the effect of the PEF. Perhaps the most important conclusion of this investigation is that temperature is a powerful and accessible mechanism to modulate and control electric fields in biological tissues and can therefore be used to optimize and control PEF treatments.

摘要

脉冲电场 (PEF) 已成为一种重要的微创外科技术,可用于多种应用,包括基因工程、电化学疗法和组织消融。本研究探索了这样一种假设,即组织的温度相关电参数可用于调节 PEF 方案的结果,为控制和优化这种微创外科手术提供了一种新方法。本研究探讨了在 PEF 过程中应用冷却温度的两种不同应用。第一种情况是使用同时输送脉冲电场和冷却温度的电极。随后的结果表明,由于这种配置产生的温度引起的电特性变化可以大大放大和限制冷却区域中的电场,同时几乎消除周围区域中的电场。这种方法可用于提高 PEF 手术的精度,并消除肌肉收缩和邻近组织的损伤。第二种考虑的配置引入了第三个探头,该探头不具有电活性,仅施加冷却边界条件。第二项研究表明,在这种探头配置中,组织的温度引起的电特性变化会大大降低冷却区域中的电场。这种新的治疗方法可能可用于保护敏感组织免受 PEF 的影响。这项研究最重要的结论之一是,温度是调节和控制生物组织中电场的强大且可访问的机制,因此可用于优化和控制 PEF 治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c07/3113852/21674239962c/pone.0020877.g001.jpg

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