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非理想溶液的受控冷冻及其在冷冻手术过程中的应用。

Controlled freezing of nonideal solutions with application to cryosurgical processes.

作者信息

Budman H M, Dayan J, Shitzer A

机构信息

Department of Mechanical Engineering, Technion-Israel Institute of Technology, Haifa.

出版信息

J Biomech Eng. 1991 Nov;113(4):430-7. doi: 10.1115/1.2895423.

DOI:10.1115/1.2895423
PMID:1762441
Abstract

Success of a cryosurgical procedure, i.e., maximal cell destruction, requires that the cooling rate be controlled during the freezing process. Standard cryosurgical devices are not usually designed to perform the required controlled process. In this study, a new cryosurgical device was developed which facilitates the achievement of a specified cooling rate during freezing by accurately controlling the probe temperature variation with time. The new device has been experimentally tested by applying it to an aqueous solution of mashed potatoes. The temperature field in the freezing medium, whose thermal properties are similar to those of biological tissue, was measured. The cryoprobe temperature was controlled according to a desired time varying profile which was assumed to maximize necrosis. The tracking accuracy and the stability of the closed loop control system were investigated. It was found that for most of the time the tracking accuracy was excellent and the error between the measured probe temperature and the desired set point is within +/- 0.4 degrees C. However, noticeable deviations from the set point occurred due to the supercooling phenomenon or due to the instability of the liquid nitrogen boiling regime in the cryoprobe. The experimental results were compared to those obtained by a finite elements program and very good agreement was obtained. The deviation between the two data sets seems to be mainly due to errors in positioning of the thermocouple junctions in the medium.

摘要

冷冻手术的成功,即实现最大程度的细胞破坏,要求在冷冻过程中控制冷却速率。标准的冷冻手术设备通常并非设计用于执行所需的受控过程。在本研究中,开发了一种新型冷冻手术设备,该设备通过精确控制探头温度随时间的变化,有助于在冷冻过程中实现指定的冷却速率。已通过将新设备应用于土豆泥水溶液对其进行了实验测试。测量了冷冻介质中的温度场,该冷冻介质的热特性与生物组织的热特性相似。根据假定能使坏死最大化的随时间变化的期望曲线来控制冷冻探头的温度。研究了闭环控制系统的跟踪精度和稳定性。结果发现,在大多数情况下跟踪精度极佳,测量的探头温度与期望设定点之间的误差在±0.4摄氏度以内。然而,由于过冷现象或冷冻探头中液氮沸腾状态的不稳定性,出现了与设定点明显的偏差。将实验结果与通过有限元程序获得的结果进行了比较,两者吻合得非常好。两个数据集之间的偏差似乎主要是由于介质中热电偶接点定位的误差所致。

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