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Experimental Validation for Microwave Based Real-time Monitoring for Microwave Ablation Treatment

机译:基于微波的微波消融治疗实时监测的实验验证

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Microwave ablation (MWA) is one of the most promising treatment tool to achieve a minimal invasion for human body. For safety and effective ablation for cancerous tissue, the accurate and real-time imaging for a temporal evolution of the ablation zone is highly demanded. This paper assumes the microwave based MWA monitoring, and introduces the novel boundary reconstruction algorithm, which has been demonstrated to achieve a real-time, accurate and noise-robust characteristic. This paper also newly introduces the S11 based complex permittivity estimator, which is necessary for estimating the ablation boundary. The both finite difference time domain (FDTD) based 3-D numerical test and the experimental investigation demonstrate that the proposed method provides accurate and high-speed 3-D imaging for the ablation zone.
机译:微波消融(MWA)是实现对人体最小限度侵袭的最有前途的治疗工具之一。为了安全且有效地切除癌组织,强烈要求对切除区域的时间演变进行准确且实时的成像。本文假设基于微波的MWA监测,并介绍了新颖的边界重构算法,该算法已被证明具有实时性,精确性和鲁棒性。本文还新介绍了S 11 基于复介电常数的估计器,这对于估计消融边界是必不可少的。基于有限时域(FDTD)的3-D数值测试和实验研究均表明,该方法为消融区提供了准确,高速的3-D成像。

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