Yu Tian-Hua, Zhou Yi-Xin, Liu Jing
Cryogenics Laboratory, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing, PR China.
J Med Eng Technol. 2004 Jul-Aug;28(4):167-77. doi: 10.1080/0309190031000148065.
A new mini-invasive hyperthermia probe using high-temperature water vapour for deep regional tumour treatment was developed in this paper. The vacuum insulation mechanism was incorporated into the probe to avoid heating damage to the normal tissues around the edge of the insertion path. To better understand the heat transfer behaviour in living tissues due to operation of the probe, theoretical models based on the Pennes' equation were established and two closed form analytical solutions under constant flux or temperature heating at the tip of probe were obtained. Parametric studies were performed to investigate the influence of various parameters on the temperature response of tissues heated by the probe. Further, several simulating experiments on the actual heating performance of the probe fabricated in this paper were conducted on the in vitro biological materials (fresh pork) and phantom gel. It was demonstrated that the probe can cause a high enough temperature over the treatment area to thermally destroy the tumour tissue in due time, while the temperature over the surrounding healthy tissues can be kept below a safe threshold value. This mini-invasive heating probe may have significant applications in future clinical tumour hyperthermia.
本文研发了一种新型的用于深部区域肿瘤治疗的高温水蒸气微创热疗探头。该探头采用了真空隔热机制,以避免对插入路径边缘周围的正常组织造成热损伤。为了更好地理解探头工作时在生物组织中的热传递行为,基于佩恩斯方程建立了理论模型,并获得了探头尖端在恒定通量或温度加热下的两个封闭形式解析解。进行了参数研究,以探讨各种参数对探头加热组织温度响应的影响。此外,还在体外生物材料(新鲜猪肉)和仿体凝胶上对本文制作的探头的实际加热性能进行了若干模拟实验。结果表明,该探头能够在治疗区域产生足够高的温度,及时热破坏肿瘤组织,同时周围健康组织的温度可保持在安全阈值以下。这种微创加热探头在未来临床肿瘤热疗中可能具有重要应用。