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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Development of a 35-MHz piezo-composite ultrasound array for medical imaging
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Development of a 35-MHz piezo-composite ultrasound array for medical imaging

机译:用于医学成像的35 MHz压电复合超声阵列的开发

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This paper discusses the development of a 64-element 35-MHz composite ultrasonic array. This array was designed primarily for ocular imaging applications, and features 2-2 composite elements mechanically diced out of a fine-grain high-density Navy Type VI ceramic. Array elements were spaced at a 50-micron pitch, interconnected via a custom flexible circuit and matched to the 50-ohm system electronics via a 75-ohm transmission line coaxial cable. Elevation focusing was achieved using a cylindrically shaped epoxy lens. One functional 64-element array was fabricated and tested. Bandwidths averaging 55%, 23-dB insertion loss, and crosstalk less than -24 dB were measured. An image of a tungsten wire target phantom was acquired using a synthetic aperture reconstruction algorithm. The results from this imaging test demonstrate resolution exceeding 50 /spl mu/m axially and 100 /spl mu/m laterally.
机译:本文讨论了64元素35MHz复合超声阵列的开发。该阵列主要设计用于眼科成像应用,并具有2-2个复合元素,这些元素是用细颗粒高密度海军VI型陶瓷机械切割而成的。阵列元件的间距为50微米,通过定制的柔性电路互连,并通过75欧姆的传输线同轴电缆与50欧姆的系统电子设备匹配。使用圆柱形环氧树脂透镜可以实现高程聚焦。制造并测试了一种功能性64元素阵列。测量的平均带宽为55%,插入损耗为23 dB,串扰小于-24 dB。使用合成孔径重建算法获取钨丝目标体模的图像。该成像测试的结果表明,轴向分辨率超过50 / spl mu / m,横向分辨率超过100 / spl mu / m。

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