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Cryogenic Heat Transfer inside the Tissues with Thermally Significant Blood Vessels during Cryosurgery

机译:冷冻过程中具有重要热血管的组织内部的低温传热

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摘要

To characterize the effect of thermally significant blood vessels (TSBV) on heat transfer inside the tissues during cryosurgery, the bioheat transfer equations controlling both the normal and the tumor tissues together with the Navier-Stokes equations controlling the blood flow inside the blood vessel were numerically solved. The tissues were treated as non-ideal materials with temperature dependent thermophysical properties regarding the effects of blood perfusion and metabolic heat generation in the unfrozen region. The blood was regarded as a Newton fluid with thermal dependent viscosity. It was found that the thermally significant blood vessel had much influence on the temperature distributions inside the normal and the tumor tissues, and the critical isotherm was reshaped to be widely different from that of the case without this blood vessel. Therefore, the optimization of the cryosurgery protocol when such TSBV presents becomes very important in order to avoid cure failure.
机译:为了表征热显着血管(TSBV)对冷冻手术期间组织内部热传递的影响,对控制正常组织和肿瘤组织的生物热传递方程以及控制血管内血液流动的Navier-Stokes方程进行了数值计算解决了。关于在未冻结区域中血液灌注和代谢热产生的影响,将组织视为具有温度依赖性热物理特性的非理想材料。血液被认为是具有热依赖性粘度的牛顿流体。发现热显着血管对正常组织和肿瘤组织内部的温度分布有很大影响,并且临界等温线被重塑以与没有该血管的情况大不相同。因此,当出现这种TSBV时,优化冷冻手术方案非常重要,以避免治疗失败。

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