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      Theoretical assessment of a synthetic aperture beamformer for real-time 3-D imaging

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          Most cited references31

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          Synthetic aperture imaging for small scale systems

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            High-speed ultrasound volumetric imaging system. II. Parallel processing and image display.

            For pt.I see ibid., vol.38, no.2, p.100-8 (1991). The authors describe the design, application, and evaluation of parallel processing to the high-speed volumetric ultrasound imaging system. The scanner produces images analogous to an optical camera or the human eye and supplies more information than conventional sonograms. Potential medical applications include improved anatomic visualization, tumor localization, and better assessment of cardiac function. The system uses pulse-echo phased array principles to steer a 2-D array transducer of 289 elements in a pyramidal scan format. Parallel processing in the receive mode produces 4992 scan lines at a rate of approximately 8 frames/s. Echo data for the scanned volume is presented online as projection images with depth perspective, stereoscopic pairs, or multiple tomographic images. The authors also describe the techniques developed for the online display of volumetric images on a conventional CRT oscilloscope and show preliminary volumetric images for each display mode.
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              Explososcan: A parallel processing technique for high speed ultrasound imaging with linear phased arrays

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                Author and article information

                Journal
                IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control
                IEEE Trans. Ultrason., Ferroelect., Freq. Contr.
                Institute of Electrical and Electronics Engineers (IEEE)
                0885-3010
                July 1999
                July 1999
                : 46
                : 4
                : 972-980
                Article
                10.1109/58.775664
                87d56abf-d59b-4c5e-a688-80c8fa75c944
                © 1999
                History

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