【摘 要】
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Background, Motivation and Objective Over the past decade, a wide range of ultrasound-based diagnostic and therapeutic applications have been developed based on the emergence of user-friendly, open-en
【机 构】
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Cephasonics, Santa Clara, California, USA
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Background, Motivation and Objective Over the past decade, a wide range of ultrasound-based diagnostic and therapeutic applications have been developed based on the emergence of user-friendly, open-ended ultrasound research systems. Open-ended research ultrasound platforms (Kaczkowski and Daigle, 2011)( Cheung et al., 2012) provide users with both the ability to access channel or beamformed RF data, as well as an interface for implementing post-processing sequences for algorithm and prototype development. Nevertheless, previous platforms relied on static list-based scheduling, which limited the user from adjusting scan parameters in real-time. The objective of this study is to demonstrate an innovative ultrasound engine and Application Programming Interface (API) equipped with a real-time dynamic hardware scheduler that allows for flexible and adaptive sequence design.
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