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Numerical analysis of temperature and thermal dose response of biological tissues to thermal non-equilibrium during hyperthermia therapy.

机译:热疗过程中生物组织对热不平衡的温度和热剂量响应的数值分析。

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摘要

The temperature and thermal dose response of tumor tissue to hyperthermia therapy under conditions of thermal non-equilibrium have been investigated. The thermal model considers the tissue with its blood vessel distribution as a porous medium and employs the convection term instead of the perfusion term in the energy conservation equations for both tissue and blood. By using a numerical method, the temperatures and thermal dose responses of tissues with different vessel diameters, blood velocities, and porosities were calculated. Through an accuracy comparison, the numerical results were used to compare this model with the results for the one-equation porous model under thermal equilibrium. The primary results indicate that the one-equation porous model is suitable for a distribution of blood vessels when the diameters are less than 30 microm and the blood velocities are lower than 0.4 cm s(-1).
机译:已经研究了在热非平衡条件下肿瘤组织对热疗的温度和热剂量响应。热模型将具有血管分布的组织视为多孔介质,并在组织和血液的能量守恒方程中采用对流项而不是灌注项。通过使用数值方法,计算了具有不同血管直径,血流速度和孔隙率的组织的温度和热剂量响应。通过精度比较,数值结果用于将该模型与热平衡下的一方程式多孔模型的结果进行比较。主要结果表明,当直径小于30微米且血流速度低于0.4 cm s(-1)时,单方程多孔模型适用于血管分布。

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