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Investigation on temperature-dependent changes of tissue thermal properties on microwave ablation treatments

机译:微波消融治疗后组织热学性质随温度变化的研究

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Microwave thermal ablation treatments induce coagulation necrosis of diseased tissue through the absorption of an electromagnetic field at microwave frequencies. In particular, the electromagnetic field absorbed by the tissue induces a temperature increase that, in turn, produces an almost instantaneous cell death. The electromagnetic field is radiated by a minimally invasive antenna located in the centre of the diseased area. Temperatures close to 60°C are needed to induce thermal ablation, so that very high temperatures values (up to 100°C or higher) can be achieved close to the radiating antenna. To develop reliable interventional protocols, numerical tools able to correctly predict the temperature increase are needed. In this work, values recently measured of the thermal conductivity as a function of the temperature have been introduced into the numerical model to evaluate their influence on the calculated data.
机译:微波热消融治疗通过吸收微波频率的电磁场,诱发患病组织的凝固坏死。特别是,被组织吸收的电磁场会引起温度升高,进而导致几乎瞬时的细胞死亡。位于患病区域中心的微创天线辐射电磁场。需要大约60°C的温度来引发热消融,因此可以在靠近辐射天线的地方实现非常高的温度值(最高100°C或更高)。为了开发可靠的介入方案,需要能够正确预测温度升高的数值工具。在这项工作中,将最近测得的热导率随温度变化的值引入了数值模型,以评估它们对计算数据的影响。

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