Zhang Jiayao, Sandison George A, Murthy Jayathi Y, Xu Lisa X
School of Mechanical Engineering, Purdue University, West Lafayette, IN 47907, USA.
J Biomech Eng. 2005 Apr;127(2):279-94. doi: 10.1115/1.1865193.
A comprehensive computational framework to simulate heat transfer during the freezing process in prostate cancer cryosurgery is presented. Tissues are treated as nonideal materials wherein phase transition occurs over a temperature range, thermophysical properties are temperature dependent and heating due to blood flow and metabolism are included. Boundary conditions were determined at the surfaces of the commercially available cryoprobes and urethral warmer by experimental study of temperature combined with a mathematical optimization process. For simulations, a suitable computational geometry was designed based on MRI imaging data of a real prostate. An enthalpy formulation-based numerical solution was performed for a prescribed surgical protocol to mimic a clinical freezing process. This computational framework allows for the individual planning of cryosurgical procedures and objective assessment of the effectiveness of prostate cryosurgery.
本文提出了一个全面的计算框架,用于模拟前列腺癌冷冻手术中冷冻过程的热传递。组织被视为非理想材料,其中相变在一定温度范围内发生,热物理性质取决于温度,并考虑了血流和代谢产生的加热。通过温度的实验研究结合数学优化过程,确定了市售冷冻探针和尿道加热器表面的边界条件。为了进行模拟,基于真实前列腺的MRI成像数据设计了合适的计算几何结构。针对规定的手术方案,采用基于焓公式的数值解法来模拟临床冷冻过程。该计算框架允许对冷冻手术程序进行个性化规划,并对前列腺冷冻手术的有效性进行客观评估。