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Efficient array beam forming by spatial filtering for ultrasound B-mode imaging

机译:通过空间滤波对超声B型成像进行有效的阵列波束形成

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摘要

This paper proposes an efficient array beam-forming method using spatial matched filtering (SMF) for ultrasonic imaging. In the proposed method, ultrasonic waves are transmitted from an array subaperture with fixed transmit focus as in conventional array imaging. At receive, radio frequency echo signals from each receive channel are passed through a spatial matched filter that is constructed based on the system transmit-receive spatial impulse response. The filtered echo signals are then summed without time delays. The filter concentrates and spatially registers the echo energy from each element so that the pulse-echo impulse response of the summed output is focused with acceptably low side lobes. Analytical beam pattern analysis and simulation results using a linear array show that this spatial filtering method can improve lateral resolution and contrast-to-noise ratio as compared with conventional dynamic receive focusing (DRF) methods. Experimental results with a linear array are consistent but point out the need to address additional practical issues. Spatial filtering is equivalent to synthetic aperture methods that dynamically focus on both transmit and receive throughout the field of view. In one common example of phase aberrations, the SMF method was degraded to a degree comparable to conventional DRF methods.
机译:本文提出了一种使用空间匹配滤波(SMF)进行超声成像的有效阵列波束形成方法。在所提出的方法中,与常规阵列成像一样,从具有固定发射焦点的阵列子孔径发射超声波。在接收时,来自每个接收通道的射频回波信号会通过一个空间匹配的滤波器,该滤波器基于系统的发射-接收空间脉冲响应而构建。然后将滤波后的回波信号求和而没有时间延迟。滤波器集中并在空间上记录来自每个元件的回波能量,以使总输出的脉冲回波脉冲响应聚焦在可接受的低旁瓣处。使用线性阵列的分析光束方向图分析和仿真结果表明,与传统的动态接收聚焦(DRF)方法相比,这种空间滤波方法可以提高横向分辨率和对比度噪声比。线性阵列的实验结果是一致的,但指出需要解决其他实际问题。空间滤波等效于合成孔径方法,该方法动态地专注于整个视场中的发射和接收。在相差的一个常见示例中,SMF方法的退化程度可与常规DRF方法相比。

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