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A new synthetic aperture imaging method using virtual elements on both transmit and receive

机译:一种新的综合孔径成像方法,在发射和接收上使用虚拟元素

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The research for improving the performance of the beamformer in a medical ultrasound imaging system while maintaining the hardware complexity properly has been steadily going on. One example of such research is the synthetic aperture sequential beamforming. This method uses fixed-point receive focusing and all-point transmit focusing through synthetic aperture imaging. Thus, the hardware complexity is greatly reduced in this method, but the performance of this method is similar to that of the conventional B-mode imaging that uses dynamic receive focusing and fixed-point transmit focusing. In this paper, we propose a novel full virtual synthetic aperture imaging method which improves the performance of the synthetic aperture sequential beamforming in terms of the lateral resolution and signal-to-noise ratio. We found that many fixed-point receive focusing blocks working in parallel can be regarded as virtual receive elements and that dynamic receive focusing can be done with these virtual receive elements. We achieve performance improvement by employing this dynamic receive focusing in the proposed method. The efficacy of the proposed method is verified through the Field II simulation.
机译:在保持硬件复杂性的同时改善医用超声成像系统中的波束形成器性能的研究一直稳定地进行。这种研究的一个例子是合成孔径顺序波束形成。该方法使用定点接收聚焦和全点传输聚焦聚焦通过合成孔径成像。因此,在该方法中大大降低了硬件复杂性,但该方法的性能类似于使用动态接收聚焦和传输聚焦的传统B模式成像的性能。在本文中,我们提出了一种新的全虚拟合成孔径成像方法,其提高了横向分辨率和信噪比的合成孔径顺序波束形成的性能。我们发现并行工作的许多定点接收聚焦块可以被视为虚拟接收元素,并且可以使用这些虚拟接收元素来完成动态接收聚焦。我们通过采用这种动态接收聚焦来实现绩效改进。通过田间II模拟验证了所提出的方法的功效。

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