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Three-dimensional real-time synthetic aperture imaging using a rotating phased array transducer

机译:使用旋转相控阵换能器的三维实时合成孔径成像

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摘要

Current 3D real-time imaging is done either with sparse 2D arrays, or with mechanically moved phased arrays. The former results in a poor resolution and contrast due to a limited amount of elements. The latter has the disadvantage of low frame rates due to the sequential acquisition of the volume line-by-line and plane-by-plane. This paper describes an approach which combines mechanically moved phased array with synthetic transmit aperture imaging, resulting in high volume acquisition rates without a trade-off in image quality. The scan method uses a conventional fully populated 64 element phased array, which is rotated over the volume of interest. The data is acquired using coded signals and synthetic transmit aperture imaging. Only one group of elements transmits at a time. The delays are set such as to form a cylindrical wave. The back-scattered signal carries information not only from the plane located directly below the transducer, but also from neighboring planes. A complete dataset for all elements for the whole rotation is acquired and stored. The volume is then focused from this complete data set in order to obtain dynamic transmit and receive focusing in all directions.
机译:当前的3D实时成像是通过稀疏2D阵列或机械移动的相控阵完成的。由于元素数量有限,前者会导致较差的分辨率和对比度。由于逐行和逐平面的顺序采集体积,后者具有帧速率低的缺点。本文介绍了一种方法,该方法将机械移动的相控阵与合成的发射孔径成像相结合,从而可以在不牺牲图像质量的情况下实现高体积采集速率。扫描方法使用常规的完全填充的64元素相控阵列,该阵列在目标体积上旋转。使用编码信号和合成发射孔径成像来获取数据。一次仅传输一组元素。设置延迟以形成圆柱形波。反向散射信号不仅从位于换能器正下方的平面传输信息,而且还从相邻平面传输信息。获取并存储整个旋转的所有元素的完整数据集。然后,从此完整的数据集中对体积进行聚焦,以获得在所有方向上的动态发送和接收聚焦。

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