Abstract:The delay-and-sum (DAS) beamformer, utilized in current state of the art ultrasound imaging systems, applies time delays on each receive channel to focus the returning echoes and weights the focused RF data on each receive channel prior to beamsummation. Apodization functions like the Hamming and Nuttall windows reduce the sidelobe levels the DAS beamformer's point spread function (PSF).As a result, apodization greatly impacts the contrast and resolution of the final output image. We propose a beamformer archi… Show more
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