首页> 外文会议>Thermal Treatment of Tissue: Energy Delivery and Assessment III; Progress in Biomedical Optics and Imaging; vol.6, no.13 >COMPUTER MODELLING OF ELECTROMAGNETIC AND THERMAL EFFECTS IN MICROWAVE SOFT TISSUE ABLATION
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COMPUTER MODELLING OF ELECTROMAGNETIC AND THERMAL EFFECTS IN MICROWAVE SOFT TISSUE ABLATION

机译:微波软组织消融中电磁和热效应的计算机模拟

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Microwave Endometrial Ablation (MEA) is a technique that can be used for the treatment of abnormal uterine bleeding. The procedure involves sweeping a specially designed microwave applicator throughout the uterine cavity to achieve an ideally uniform depth of tissue necrosis of between 5 and 6mm. We have performed a computer analysis of the MEA procedure in which finite element analysis was used to determine the SAR pattern around the applicator. This was followed by a Green Function based solution of the Bioheat equation to determine the resulting induced temperatures. The method developed is applicable to situations involving a moving microwave source, as used in MEA. The validity of the simulation was verified by measurements in a tissue phantom material using a purpose built applicator and a calibrated pulling device. From the calculated temperatures the depth of necrosis was assessed through integration of the resulting rates of cell death estimated using the Arrhenius equation. The Arrhenius parameters used were derived from published data on BHK cells. Good agreement was seen between the calculated depths of cell necrosis and those found in human in-vivo testing.
机译:微波子宫内膜切除术(MEA)是一种可用于治疗异常子宫出血的技术。该过程包括在子宫腔内扫一特别设计的微波辐射器,以达到理想的均匀的组织坏死深度,介于5至6mm之间。我们对MEA程序进行了计算机分析,其中使用了有限元分析来确定喷头周围的SAR模式。然后是基于绿色函数的Bioheat方程解,以确定所得的诱导温度。所开发的方法适用于MEA中涉及移动微波源的情况。通过使用专用涂药器和校准的牵引装置对组织体模材料进行测量,可以验证模拟的有效性。根据计算出的温度,通过对使用Arrhenius方程估算的细胞死亡率的积分来评估坏死的深度。使用的Arrhenius参数来自BHK细胞的公开数据。在细胞坏死的计算深度与人体内测试中发现的深度之间达成了良好的一致性。

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