热疗剂量和作用深度

S. Oliver, Szigeti Gyula Peter, V. Tamas, Szasz Andras
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引用次数: 11

摘要

当以深度加热为目标时,电磁加热的穿透深度是影响其应用的关键因素。电容耦合是射频加热应用中最流行的加热技术之一。目标的匹配度决定了穿透的可能性。电流匹配解比电容平面波解在射频区域具有更深的数学定义穿深。同等功率的应用要求平面波感应电压高、电流小,而电流匹配要求电压低、电流大。两种方案的有效作用深度不相同,由入射光束1/e部分的强度定义的穿透在电流匹配技术中更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hyperthermia Dosing and Depth of Effect
The penetration depth in the electromagnetic heating could be a crucial factor of its application, when the deep heating is the goal. The capacitive coupling is one of the most popular heating techniques in radiofrequency (RF) heating applications. The matching of the target defines the penetration possibilities. The current matched solution has deeper mathematically defined penetration in RF region than the capacitive plane-wave solution. The same power of application request high voltage with relatively low current for plane-wave inducing, while in current matching it has low voltage with high current. The effective depth of the action in the two solutions do not identical, the penetration defined by the intensity of 1/e portion of the incident beam is higher in the current-matched techniques.
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来源期刊
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