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Design and Evaluation of a 2-D Planar Therapeutic Ultrasound Phased Array

机译:2-D平面治疗超声序列阵列的设计与评价

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Focused ultrasound continues to be investigated as an exciting technique for several medical therapy applications including tissue ablation. Phased array transducers serve as important devices for delivering the high intensity focused ultrasound to the targeted tissue. These arrays often produce undesired secondary foci called grating lobes that can result in heating of non-targeted healthy tissue. Grating lobes can be eliminated by setting the element-spacing between adjacent elements to /2 or less. The aim of this research was to construct and evaluate a 2-D planar phased array with close to /2 element-spacing. A 7×7 element array with element-spacing of 0.76mm was constructed using 1,3-piezocomposite material. Acoustic field measurements of the array focused at three different locations were taken to demonstrate its ability to scan the focus in a volume. In addition, a maximum average intensity of 5.5W/cm2 was measured for the unfocused array using radiation force techniques.
机译:聚焦超声继续被调查为包括组织消融的几种医疗治疗应用的令人兴奋的技术。分阶段阵列传感器用作将高强度聚焦超声的重要装置作为靶向组织。这些阵列通常产生称为光栅裂片的不期望的次要病灶,这可能导致加热非靶向健康组织。通过将相邻元件之间的元素间隔设定为/ 2或更低,可以消除光栅裂片。该研究的目的是构造和评估具有接近/ 2元间距的2-D平面相控阵。使用1,3-压电复合材料构建具有0.76mm元间距的7×7元件阵列。采用位于三个不同位置的阵列的声场测量来展示其在体积中扫描焦点的能力。另外,使用辐射力技术测量未聚焦阵列的最大平均强度为5.5W / cm2。

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