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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Ultrasonic phased arrays with variable geometric focusing for hyperthermia applications
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Ultrasonic phased arrays with variable geometric focusing for hyperthermia applications

机译:具有可变几何聚焦的超声波相控阵,用于热疗应用

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摘要

An ultrasonic applicator, which utilizes both electronic and variable geometric focusing, for deep-localized hyperthermia is investigated. The applicator is based around a linear phased array that furnishes its electronic focusing capability. The output of the array radiates through a spherical liquid-lens that provides the applicator a variable geometric focusing capability as well. A lens of this type adds dynamic focusing to the elevation dimension of the linear phased array. By controlling the volume of liquid in the lens (and thus the radius of curvature of its membrane), dynamic control of the geometrical focus can be achieved. Comparisons of computer simulations and experimental measurements of the field intensity distribution of a small-scale prototype applicator are presented. Important design parameters, such as the choice of the liquid for the lens and the size and number of array elements, are examined.
机译:研究了利用电子和可变几何聚焦的超声施加器,用于深部局部热疗。施加器基于线性相控阵,可提供其电子聚焦功能。阵列的输出通过球形液体透镜辐射,该液体透镜也为施药器提供了可变的几何聚焦能力。这种类型的透镜为线性相控阵的仰角尺寸增加了动态聚焦。通过控制透镜中液体的体积(从而控制其膜的曲率半径),可以实现对几何焦点的动态控制。提出了计算机模拟和实验测量的小型原型喷头场强分布的比较。检查了重要的设计参数,例如镜片的液体选择以及阵列元件的大小和数量。

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