首页> 外文会议>Annual Conference of Japanese Society for Medical and Biological Engineering;Annual International Conference of the IEEE Engineering in Medicine and Biology Society >The relation between temperature distribution for lung RFA and electromagnetic wave frequency dependence of electrical conductivity with changing a lung's internal air volumes
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The relation between temperature distribution for lung RFA and electromagnetic wave frequency dependence of electrical conductivity with changing a lung's internal air volumes

机译:肺RFA的温度分布与电导率的电磁波频率相关性随肺内部空气量的变化之间的关系

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Radio frequency ablation (RFA) for lung cancer has increasingly been used over the past few years because it is a minimally invasive treatment. As a feature of RFA for lung cancer, lung contains air during operation. Air is low thermal and electrical conductivity. Therefore, RFA for this cancer has the advantage that only the cancer is coagulated, and it is difficult for operators to control the precise formation of coagulation lesion. In order to overcome this limitation, we previously proposed a model-based robotic ablation system using finite element method. Creating an accurate thermo physical model and constructing thermal control method were a challenging problem because the thermal properties of the organ are complex. In this study, we measured electromagnetic wave frequency dependence of lung's electrical conductivity that was based on lung's internal air volumes dependence with in vitro experiment. In addition, we validated the electromagnetic wave frequency dependence of lung's electrical conductivity using temperature distribution simulator. From the results of this study, it is confirmed that the electromagnetic wave frequency dependence of lung's electrical conductivity effects on heat generation of RFA.
机译:在过去的几年中,用于射频消融的射频消融(RFA)越来越多,因为它是一种微创治疗方法。作为针对肺癌的RFA的一项功能,术中肺中含有空气。空气的导热率和导电率低。因此,针对该癌症的RFA具有仅癌症被凝结的优点,并且操作者难以控制凝结病变的精确形成。为了克服这一限制,我们先前提出了一种使用有限元方法的基于模型的机器人消融系统。由于器官的热特性复杂,因此创建准确的热物理模型和构建热控制方法是一个具有挑战性的问题。在这项研究中,我们通过体外实验测量了基于肺内部空气体积依赖性的肺电导率的电磁波频率依赖性。此外,我们使用温度分布模拟器验证了肺电导率的电磁波频率依赖性。从这项研究的结果可以证实,肺电导率的电磁波频率依赖性对RFA的热量产生影响。

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