首页> 外文期刊>International journal of hyperthermia: The official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group >Multilayer conformal applicator for microwave heating and brachytherapy treatment of superficial tissue disease.
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Multilayer conformal applicator for microwave heating and brachytherapy treatment of superficial tissue disease.

机译:多层保形涂药器,用于微波加热和近距离治疗浅表组织疾病。

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PURPOSE: The purpose of this study was to construct and perform preliminary functionality evaluations of a multilayer conformal applicator with provisions for thermal monitoring, tight conformity and simultaneous microwave heating and brachytherapy treatment of large-area contoured surfaces. MATERIALS AND METHODS: The multilayer conformal applicator consists of thermal monitoring catheters for fibre-optic monitoring of skin temperatures, a waterbolus, a PCB microwave antenna array, a dielectric spacer for brachytherapy considerations, brachytherapy catheters for delivering HDR radiation and an inflatable air bladder for improving conformity to contoured surfaces. The applicator also includes an elastic attachment structure to hold the applicator securely in place on the patient. The conformity of the applicator to irregular surfaces was evaluated through CT imaging of the applicator fitted onto a life-sized human torso phantom. The fluid flow dynamics of the waterbolus, which impact the effectiveness of temperature control, were evaluated with thermometry during a 19 degrees C step change temperature of the circulating water. RESULTS: CT imaging showed improved conformity to the torso phantom surface following the application of gentle inward pressure from inflating the outer air bladder. Only a small number of 1-5 mm sized air gaps separated the conformal applicator and tissue surface. Thermometry testing of the bolus fluid flow dynamics demonstrated temperature uniformity within +/-0.82 degrees C across a 19 x 34 x 0.6 cm area bolus and +/-0.85 degrees C across a large 42 x 32 x 0.6 cm area bolus. CONCLUSION: CT scans of the applicator confirmed that the applicator conforms well to complex body contours and should maintain good conformity and positional stability even when worn on a mobile patient. Thermometry testing of two different waterbolus geometries demonstrated that uniform circulation and temperature control can be maintained throughout large, complex bolus shapes.
机译:目的:本研究的目的是构建并进行多层保形敷贴器的初步功能评估,其中包括对大面积轮廓表面进行热监测,紧密贴合以及同时进行微波加热和近距离放射治疗的规定。材料和方法:多层保形敷贴器由用于皮肤温度的光纤监测的热监测导管,水丸,PCB微波天线阵列,用于近距离放射治疗的介电间隔物,用于传递HDR辐射的近距离放射治疗导管和可充气的气囊组成。改善与轮廓表面的一致性。施加器还包括弹性附接结构,以将施加器牢固地保持在患者身上的适当位置。通过安装在真人大小的人体躯干体模上的涂药器的CT成像评估涂药器对不规则表面的适应性。在循环水的19摄氏度阶跃变化温度下,通过测温法评估了影响温度控制效果的水团的流体动力学。结果:由于从外部气囊充气施加了适度的向内压力,CT成像显示与躯干体模表面的贴合性得到改善。仅少量的1-5毫米大小的气隙将保形施药器和组织表面隔开。推注流体流动动力学的温度测试表明,在19 x 34 x 0.6 cm的区域推注范围内,温度均匀性在+/- 0.82℃范围内;在大的42 x 32 x 0.6 cm的区域推注范围内,温度均匀性在+/- 0.85°C范围内。结论:涂药器的CT扫描证实涂药器能很好地适应复杂的身体轮廓,即使戴在活动的患者身上也应保持良好的贴合性和位置稳定性。对两种不同的水团几何形状进行的测温测试表明,在大型,复杂的团块形状中都可以保持均匀的循环和温度控制。

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