Key result
The high-performance CORDIC algorithm improved the accuracy of ultrasound data processing and provided reliable radial artery vessel diameter measurements in 20 volunteers.
Why the study?
Traditional digital signal processing struggles to meet real-time requirements for radial artery ultrasound data processing, driving the need to improve computational accuracy and reduce hardware complexity.
Does the high-performance CORDIC algorithm improve computational accuracy and reliability of radial artery ultrasound imaging in volunteers?
Population
20 volunteers
Comparison
High-performance CORDIC algorithm vs traditional digital signal processing
Authors
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Should not yet alter clinical ultrasound protocols; leaves open larger-scale validation of CORDIC algorithms in vascular imaging.
Does the high-performance CORDIC algorithm improve computational accuracy and reliability of radial artery ultrasound imaging in volunteers?
The high-performance CORDIC algorithm improves the accuracy and real-time processing capabilities of radial artery ultrasound imaging systems.
Zhang et al. (2023) studied Radial artery ultrasound imaging (n=20). High-performance CORDIC algorithm was evaluated on Computational accuracy and vessel diameter measurements. The high-performance CORDIC algorithm improved the accuracy of ultrasound data processing and provided reliable radial artery vessel diameter measurements in 20 volunteers.
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