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Optical, thermal, and electrical monitoring of radio-frequency tissue modification

机译:光,热和电监测射频组织修饰

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摘要

Radio-frequency (rf) tissue fusion involves the sealing of tissue between two electrodes delivering rf currents. Applications include small bowel fusion following anastomosis. The mechanism of adhesion is poorly understood, but one hypothesis is that rf modification is correlated to thermal damage and dehydration. A multimodal monitoring system capable of acquiring tissue temperature, electrical impedance, and optical transmittance at 1325-nm wavelength during rf delivery by a modified Ligasure? fusion tool is presented. Measurements carried out on single layers of ex vivo porcine small bowel tissue heated at ≈500-kHz frequency are correlated with observation of water evaporation and histological studies on full seals. It is shown that the induced current generates a rapid quasilinear rise of temperature until the boiling point of water, that changes in tissue transmittance occur before impedance control is possible, and that a decrease in transmission occurs at typical denaturation temperatures. Experimental results are compared with a biophysical model for tissue temperature and a rate equation model for thermal damage.
机译:射频(rf)组织融合涉及传递rf电流的两个电极之间的组织密封。应用包括吻合术后的小肠融合术。人们对粘附的机理了解甚少,但是一个假设是,射频修饰与热损伤和脱水有关。一种多模式监测系统,能够通过改进的Ligasure?在射频递送过程中获取组织温度,电阻抗和1325 nm波长处的光透射率。介绍了融合工具。在以约500 kHz的频率加热的离体猪小肠组织的单层上进行的测量与水蒸发的观察和全封闭组织学研究相关。结果表明,感应电流产生快速的准线性温度升高直到水的沸点,在可以进行阻抗控制之前发生组织透射率的变化,并且在典型的变性温度下发生透射率的降低。将实验结果与组织温度的生物物理模型和热损伤的速率方程模型进行比较。

著录项

  • 来源
    《Journal of biomedical optics》 |2010年第1期|p.018003.1-018003.10|共10页
  • 作者单位

    Imperial College London Department of Electrical and Electronic Engineering Exhibition Road London SW7 2AZ, United Kingdom and Imperial College London St Mary's Hospital Department of Bio Surgery and Surgical Technology Praed Street London W2 1 NY, United Kingdom,Imperial College London, Electrical and Electronic Engineering, Optical and Semi Conductor Croup, Exhibition Road, London, SW7 2BT, United Kingdom;

    Imperial College London Department of Electrical and Electronic Engineering Exhibition Road London SW7 2AZ, United Kingdom;

    Imperial College London St Mary's Hospital Department of Bio Surgery and Surgical Technology Praed Street London W2 1 NY, United Kingdom;

    Imperial College London St Mary's Hospital Department of Bio Surgery and Surgical Technology Praed Street London W2 1 NY, United Kingdom;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    radio-frequency tissue fusion; monitoring; tissue modification;

    机译:射频组织融合;监控;组织修饰;

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