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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Three-dimensional numerical simulation of the effects of fractal vascular trees on tissue temperature and intracelluar ice formation during combined cancer therapy of cryosurgery and hyperthermia
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Three-dimensional numerical simulation of the effects of fractal vascular trees on tissue temperature and intracelluar ice formation during combined cancer therapy of cryosurgery and hyperthermia

机译:冷冻和热疗联合癌症治疗过程中分形维管树对组织温度和细胞内冰形成影响的三维数值模拟

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A three-dimensional cell-to-tissue multiscale model for quantitative evaluation of the influences of vascular network on the treatment outcome of combined cancer therapy of cryosurgery and hyperthermia was developed, where the bioheat transfer equation was used to predict the thermal history in both the tumor and normal tissues, the Navier Stokes equations were used to calculate the temperature and flow fields in the vascular network generated using fractal theory based on MRI images, and the thermal and cryo damage functions together with the injury caused by intracellular ice formation were used for evaluating the killing effect. The effects of the vascular tree on both the thermal history and intracellular ice formation in the tissues were investigated. For a tumor located at the first level of vascular network, the vascular network is significant only when the distance between the tumor and blood vessel is less than three times of the radius (R) of the tumor and this critical distance decreases to 2R for the second level of the vascular tree. For a fixed distance between tumor and blood vessel, the first level of vascular network was found to be thermally significant while the third or lower levels of vascular tree are not. (C) 2015 Elsevier Ltd. All rights reserved.
机译:建立了三维细胞到组织的多尺度模型,用于定量评估血管网络对冷冻疗法和高温疗法的联合癌症治疗结果的影响,在该模型中,生物传热方程被用于预测两个部位的热史。肿瘤和正常组织,使用Navier Stokes方程来计算基于MRI图像的分形理论在血管网络中产生的温度和流场,并使用热损伤功能和冷冻损伤功能以及细胞内结冰造成的损伤评估杀伤效果。研究了血管树对组织中的热史和细胞内冰形成的影响。对于位于血管网络第一层的肿瘤,仅当肿瘤与血管之间的距离小于肿瘤半径(R)的三倍并且对于皮肤癌而言该临界距离减小至2R时,血管网络才有意义。血管树的第二层。对于肿瘤与血管之间的固定距离,发现血管网络的第一级具有热重要性,而血管树的第三级或更低级则没有。 (C)2015 Elsevier Ltd.保留所有权利。

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