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Characterization and Analysis of Wideband Temperature-Dependent Dielectric Properties of Liver Tissue for Next-Generation Minimally Invasive Microwave Tumor Ablation Technology

机译:下一代肝组织宽带温度依赖性介电性能的表征与分析,对下一代微波微波肿瘤消融技术

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Microwave ablation (MWA) is a minimally invasive thermal therapy that delivers microwave energy to a malignant tumor via an interstitial antenna. To date, MWA systems have primarily operated at 915 MHz or 2.45 GHz. Knowledge of the temperature-dependent tissue dielectric properties at frequencies above 2.45 GHz is essential for future development of MWA systems that leverage advantageous antenna design and ablation performance characteristics at higher frequencies. This information is also critical for the development of real-time microwave sensing techniques for MWA monitoring. We report measured and modeled wideband (0.5-20 GHz) temperature-dependent (25-93°C) dielectric properties of ex vivo porcine liver tissue during MWA. The temperature-dependent dielectric properties were modeled using two-pole Debye models with temperature-dependent parameters described by third-order polynomials. The results address a gap in present knowledge of properties over both a wide frequency band and wide range of temperatures relevant to MWA.
机译:微波消融(MWA)是一种微创热疗法,可通过间质天线向恶性肿瘤提供微波能量。迄今为止,MWA系统主要在915 MHz或2.45 GHz下运行。高于2.45GHz的频率依赖于温度的组织介电性能对于MWA系统的未来发展是必不可少的,该系统在较高频率下利用有利的天线设计和消融性能特性。此信息对于MWA监测的实时微波传感技术也是至关重要的。我们在MWA期间报告了在MWA期间进行的测量和建模的宽带(0.5-20GHz)温度依赖性(25-93°C)介电性能。使用具有由三阶多项式描述的温度依赖参数的双极德语模型进行建模温度依赖性介电性能。结果在宽频带和与MWA相关的宽频带和各种温度范围内,解决了差距。

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