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基于计算机在线监测温度和功率的实验性射频(RF)凝固术。

Experimental radiofrequency (RF) coagulation with computer-based on line monitoring of temperature and power.

作者信息

Moringlane J R, Koch R, Schäfer H, Ostertag C B

机构信息

Department of Stereotaxic Neurosurgery, Saarland University, Homburg/Saar, Federal Republic of Germany.

出版信息

Acta Neurochir (Wien). 1989;96(3-4):126-31. doi: 10.1007/BF01456171.

Abstract

The safety and reliability of radiofrequency coagulative techniques are questioned after each coagulation, especially in functional neurosurgery. In spite of the high level of technical development of modern surgical RF generators there is still uncertainty about the character of the coagulative lesion. For the present study, a 500 kHz RF generator was connected through a module for analog/digital conversion and for regulation to a personal computer provided with a software programme for the graphic display in real time of the RF power and of the temperature/time curves. The effects of thermocoagulation were studied in fresh egg white, and monopolar lesions were made in the subcortical white matter of rabbits with a probe with a 0.5 mm diameter and a bare tip of 3 mm in length. The regularity of thermocoagulation depends on the accurate temperature reading at the tip of the electrode. The ideal course of the temperature is a smoothly ascending curve from the level of 37 degrees C to the level present for coagulation, followed by a straight horizontal line. With too slow a response of the probe to temperature changes there is an inherent danger of overheating in the initial phase of the procedure. Additionally the power level has to be adjusted for each probe. On line monitoring with graphic display of the physical parameters provides a direct control of the course of the coagulation. Regular curves of the physical parameters without temperature overshoot correspond to reproducible lesions in vitro and in vivo.

摘要

每次进行射频凝固技术后,其安全性和可靠性都会受到质疑,尤其是在功能神经外科手术中。尽管现代手术射频发生器的技术发展水平很高,但关于凝固性损伤的特征仍存在不确定性。在本研究中,一台500kHz的射频发生器通过一个用于模拟/数字转换和调节的模块与一台配备有软件程序的个人计算机相连,该软件程序可实时图形显示射频功率以及温度/时间曲线。在新鲜蛋清中研究了热凝的效果,并用直径0.5mm、裸端长度3mm的探针在兔的皮质下白质中制作了单极损伤。热凝的规律性取决于电极尖端精确的温度读数。理想的温度变化过程是从37摄氏度平稳上升到凝固所需的温度水平,然后是一条水平直线。如果探针对温度变化的响应过慢,在操作的初始阶段就存在过热的固有风险。此外,每个探针都必须调整功率水平。通过图形显示物理参数进行在线监测可直接控制凝固过程。没有温度过冲的物理参数规则曲线对应于体外和体内可重复的损伤。

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