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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Unit-delay focusing architecture and integrated-circuit implementation for high-frequency ultrasound
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Unit-delay focusing architecture and integrated-circuit implementation for high-frequency ultrasound

机译:高频超声的单位延迟聚焦架构和集成电路实现

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High-frequency ultrasound (above 10 MHz) has been used successfully in many medical applications, including eye, skin, gastrointestinal, intravascular, and Doppler flow imaging. Most of these applications use single-element transducers, thereby imposing a tradeoff between resolution and depth of field. Fabrication difficulties and the need for high-speed electronic beamformers have prevented widespread use of arrays at high frequencies. In this paper, a unit-delay focusing architecture suitable for use with high-frequency ultrasound annular arrays is described. It uses a collection of identical, active delay cells that may be simultaneously varied to accomplish focusing. Results are presented for an analog integrated circuit intended for use with a five-element, 50-MHz planar annular array. Focusing is possible over an axial range for which the ratio of maximum to minimum f-number is 2.1. Unit-delay architectures also are described for curved annular arrays and linear arrays.
机译:高频超声(10 MHz以上)已成功用于许多医疗应用,包括眼,皮肤,胃肠道,血管内和多普勒血流成像。这些应用中的大多数使用单元素换能器,从而在分辨率和景深之间进行折衷。制造困难和对高速电子波束形成器的需求已经阻止了高频阵列的广泛使用。在本文中,描述了适用于高频超声环形阵列的单位延迟聚焦架构。它使用一组相同的有源延迟单元,这些单元可以同时更改以完成聚焦。给出了旨在与五元素,50 MHz平面环形阵列一起使用的模拟集成电路的结果。可以在最大f值与最小f值之比为2.1的轴向范围内进行聚焦。还描述了用于弯曲环形阵列和线性阵列的单位延迟架构。

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