一种用于非侵入性深部热疗的新型同轴透射电镜射频/微波应用器。

J J Lagendijk
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引用次数: 50

摘要

目前,人们正在努力开发非侵入式加热系统,以产生可控的局部或局部深部热疗。电磁干扰技术(10-80 MHz)与几个分开的涂抹器或多个涂抹器可以产生深部加热。本研究所设计了一种同轴频率无关的瞬变电磁法射频/微波应用器。这种涂抹器可以在身体的中心产生理论上最优的最大干扰。涂抹器构造简单,价格低廉。为了在现有设备上测试设计,开发了TEM应用器的缩放原型。原型机直径为20厘米,工作频率为434兆赫。该涂抹器已在几种虚幻材料上进行了测试。实测的吸收功率分布与理论计算的吸收功率分布吻合较好。10- 80mhz TEM深体施加器的吸收功率分布的理论计算结果令人鼓舞。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new coaxial TEM radiofrequency/microwave applicator for non-invasive deep-body hyperthermia.
At the moment great efforts are being made to develop non-invasive heating systems which produce controlled local or regional deep-body hyperthermia. Electromagnetic interference techniques (10-80 MHz) with several separated applicators or with multiple applicators can produce deep-body heating. In our institute a coaxial frequency-independent TEM radiofrequency/microwave applicator has been designed. This applicator can produce a theoretically optimal interference maximum in the centre of the body. The applicator is very simple to construct and inexpensive. To test the design with the equipment available, a scaled prototype of the TEM applicator has been developed. The prototype has a diameter of 20 cm and operates at 434 MHz. The applicator has been tested on several phantom materials. The measured absorbed power distributions are in good agreement with the calculated theoretical distributions. The theoretical calculations of the absorbed power distributions of a 10-80 MHz TEM deep-body applicator are very encouraging.
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