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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Feasibility of ultrasound hyperthermia with waveguide interstitial applicator
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Feasibility of ultrasound hyperthermia with waveguide interstitial applicator

机译:波导间质施加器进行超声热疗的可行性

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摘要

Interstitial and intracavitary ultrasonic hyperthermia applicators facilitate well-controlled power deposition in tissues. In this paper, analysis of temperature elevation and experimental results in tissue phantom, animal tissue in vivo and animal tissue in vitro are presented for a waveguide applicator intended for treatment of brain tumors. It consisted of a G18 hypodermic needle attached via a conical velocity transformer to a 12.7-mm-diameter piezoelectric disk operated at 1.0 MHz. The axial acoustic pressure distribution had a standing-wave pattern with the four cycles/cm spatial periodicity. This periodicity was absent in the temperature distribution in tissue phantoms. The simulations based on a solution to the effective heat conductivity equation indicated that the hyperthermic range can be reached within a 4- and a 10-mm radius around the applicator for a 21- and a 60-mm sample diameters, respectively, with reasonable input power. The first number corresponded closely to the 5-mm radius observed in porcine brain in vivo and the second one came close to the 9-mm radius in porcine brain in vitro. The presented results demonstrate the potential of the ultrasound waveguide interstitial applicator for hyperthermia of small volume tumors.
机译:间质和腔内超声热疗器可促进组织中功率控制得当。在本文中,针对用于治疗脑肿瘤的波导施加器,对组织模型,体内动物组织和体外动物组织中的温度升高和实验结果进行了分析。它由一个G18皮下注射针头组成,该针头通过锥形速度转换器连接到以1.0 MHz运行的直径为12.7 mm的压电盘上。轴向声压分布具有四个周期/ cm空间周期性的驻波模式。组织体模中的温度分布没有这种周期性。根据有效导热系数方程的解法进行的模拟表明,对于21毫米和60毫米的样品直径,可以分别在涂药器周围的4毫米和10毫米半径内达到高温范围,并且输入合理功率。第一个数字与在猪脑中体内观察到的5毫米半径非常接近,而第二个数字与在猪脑中体外观察到的9毫米半径接近。提出的结果证明了超声波导间质施加器在小体积肿瘤热疗中的潜力。

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