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Synthetic aperture imaging for small scale systems

机译:小型系统的合成孔径成像

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摘要

Multi-element synthetic aperture imaging methods suitable for applications with severe cost and size limitations are explored. Array apertures are synthesized using an active multi-element receive subaperture and a multi-element transmit subaperture defocused to emulate a single-element spatial response with high acoustic power. Echo signals are recorded independently by individual elements of the receive subaperture. Each method uses different spatial frequencies and acquisition strategies for imaging, and therefore different sets of active transmit/receive element combinations. Following acquisition, image points are reconstructed using the complete data set with full dynamic focus on both transmit and receive. Various factors affecting image quality have been evaluated and compared to conventional imagers through measurements with a 3.5 MHz, 128-element transducer array on different gel phantoms. Multielement synthetic aperture methods achieve higher electronic signal to noise ratio and better contrast resolution than conventional synthetic aperture techniques, approaching conventional phased array performance.
机译:探索了适用于具有严格成本和尺寸限制的应用的多元素合成孔径成像方法。使用有源多元素接收子孔径和散焦的多元素发射子孔径合成阵列孔径,以模拟具有高声功率的单元素空间响应。回波信号由接收子孔径的各个元素独立记录。每种方法都使用不同的空间频率和采集策略进行成像,因此使用了不同组的有效发射/接收元素组合。采集之后,将使用完整的数据集来重构图像点,并将全部动态焦点放在发送和接收上。已评估了影响图像质量的各种因素,并通过在不同凝胶体模上使用3.5 MHz,128个元素的换能器阵列进行测量,将其与常规成像器进行了比较。与传统的合成孔径技术相比,多元素合成孔径方法可实现更高的电子信噪比和更好的对比度分辨率,从而达到传统的相控阵性能。

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