新型915-MHz直接接触涂抹器的性能,减少泄漏。

G Kantor, D M Witters
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引用次数: 6

摘要

在915 MHz的工业、科学、医疗(ISM)频率下,商业开发一种安全有效的直接接触式透热涂抹器的技术可行性进行了论证。其基本设计包括一个圆波导,其内部加载两对正交的前脊以获得圆偏振,两个后脊带探针来激发波导。考虑了两种原型设计:小涂抹器(直径15厘米)有一个环形扼流圈覆盖着2.5厘米厚的微波吸收器,大涂抹器(直径25厘米)有两个额外的同心扼流圈来限制泄漏辐射。根据ORH微波透热测试方案的要求来评估涂抹器的性能,以控制杂散辐射并向具有1 cm或2 cm脂肪层的模拟肌肉组织提供热有效吸收剂量率。确定了为这种平面模体提供235 w /kg的热有效比吸收率(SAR)所需的净功率。对于这个净功率,对于直接接触薄膜的涂敷器,泄漏水平大大小于5 mW/cm2(距离涂敷器-薄膜边界5厘米处)。如果这些涂抹器与平面模体之间的间距很小(1厘米),则向模体提供有效SAR所需的净功率和相关的泄漏可能会变得过大。对于小型涂抹器,在1厘米脂肪层模体的肌肉组织中诱导235 W/kg的SAR所需的净功率约为330 W,泄漏约为120 mW/cm2。对于2厘米的脂肪层幻像,这些值略高。对于大型涂抹器,使用1厘米的脂肪层幻影,值约为200w,约为17mw /cm2。同样,对于2厘米的脂肪层幻像,这些值略高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The performance of a new 915-MHz direct contact applicator with reduced leakage.

The technical feasibility of commercially developing a safe and effective direct contact diathermy applicator operating at the industrial, scientific, medical (ISM) frequency of 915 MHz is demonstrated. The basic design consists of a circular waveguide which is internally loaded with two orthogonal pairs of forward ridges to obtain circular polarization and two rear ridges with a probe to excite the guide. Two prototype designs are considered: the small applicator (15 cm diameter) has one annular choke covered with a 2.5-cm thick microwave absorber, and the large applicator (25 cm diameter) has two additional concentric chokes to limit leakage radiation. The performance of the applicators was evaluated in terms of the requirements of a ORH microwave diathermy test protocol to control stray radiation and deliver a thermally effective absorbed dose rate to simulated muscle tissue of a phantom with a 1-cm or 2-cm fat layer. The net power required to deliver a thermally effective 235-W/kg specific absorption rate (SAR) to such a planar phantom was determined. For this net power, leakage levels considerably less than 5 mW/cm2 (at 5 cm from applicator-phantom boundary) were obtained for the applicators in direct contact with the phantom. If a small spacing (1 cm) between these applicators and planar phantoms is introduced, the net power required to deliver an effective SAR to a phantom and the associated leakage can become excessive. For the small applicator, the required net power for inducing an SAR of 235 W/kg in muscle tissue of a 1-cm fat layer phantom is about 330 W and the leakage is about 120 mW/cm2. For a 2-cm fat layer phantom, these values are somewhat higher. For the large applicator, using a 1-cm fat layer phantom, the values are about 200 W and about 17 mW/cm2. Again, for a 2-cm fat layer phantom, these values are somewhat higher.

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