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A Vascular Model for Heat Transfer in an Isolated Pig Kidney During Water Bath Heating

机译:水浴加热过程中离体猪肾脏传热的血管模型

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Isolated pig kidney has been widely used as a perfused organ phantom in the studies of hyperthermia treatments, as blood perfusion plays an essential role in thermoregulation of living tissues. In this research, a vascular model was built to describe heat transfer in the kidney phantom during water bath heating. The model accounts for conjugate heat transfer between the paired artery and vein, and their surrounding tissue in the renal medulla. Tissue temperature distribution in the cortex was predicted using the Pennes bioheat transfer equation. An analytical solution was obtained and validated experimentally for predicting the steady state temperature distribution in the pig kidney when its surface kept at a uniform constant temperature. Results showed that local perfusion rate significantly affected tissue temperature distributions. Since blood flow is the driving force of tissue temperature oscillations during hyperthermia, the newly developed vascular model provides a useful tool for hyperthermia treatment optimization using the kidney phantom model.
机译:离体的猪肾已被广泛用作热疗研究中的灌注器官模型,因为血液灌注在活体组织的温度调节中起着至关重要的作用。在这项研究中,建立了一个血管模型来描述水浴加热过程中肾脏体模中的热传递。该模型说明了成对的动脉和静脉及其在肾髓质周围组织之间的共轭热传递。使用Pennes生物传热方程预测皮层中的组织温度分布。获得了一种分析溶液,并通过实验进行了验证,以预测猪肾脏的表面保持一致的恒定温度时的稳态温度分布。结果表明,局部灌注速率显着影响组织温度分布。由于血液流动是热疗期间组织温度振荡的驱动力,因此新开发的血管模型为使用肾脏模型的热疗治疗优化提供了有用的工具。

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