Rossi Michael R, Rabin Yoed
Biothermal Technology Laboratory, Department of Mechanical Engineering, Carnegie Mellon University, Pittsburgh, PA 15213, USA.
Phys Med Biol. 2007 Aug 7;52(15):4553-67. doi: 10.1088/0031-9155/52/15/013. Epub 2007 Jul 3.
As a part of an ongoing effort to develop computerized planning tools for cryosurgery, an experimental study has been conducted to verify a recently developed numerical technique for bioheat transfer simulations. Experiments were performed on gelatin solution as a phantom material, using proprietary liquid-nitrogen cryoprobes. Urethral warming was simulated with the application of a cryoheater, which is a proprietary temperature-controlled electrical heater. The experimental design was aimed at creating a 2D heat transfer problem. Analysis of experimental results was based on reconstruction of the frozen region from video recordings, using a region-growing segmentation algorithm. Results of this study show an average disagreement of 2.9% in the size of the frozen region, between experimental data and numerical simulation of the same experiment, which validates both the recently developed algorithm for numerical simulations and the newly developed algorithm for segmentation from video recordings.
作为开发冷冻手术计算机化规划工具的持续努力的一部分,已进行了一项实验研究,以验证最近开发的用于生物热传递模拟的数值技术。使用专有的液氮冷冻探头,以明胶溶液作为模拟材料进行了实验。通过应用一种专有的温度控制电加热器——冷冻加热器来模拟尿道升温。实验设计旨在创建一个二维热传递问题。实验结果分析基于使用区域生长分割算法从视频记录中重建冷冻区域。本研究结果表明,在同一实验的实验数据与数值模拟之间,冷冻区域大小的平均差异为2.9%,这验证了最近开发的数值模拟算法以及新开发的从视频记录中进行分割的算法。