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A new performance analysis metric for medical ultrasound

Publication ,  Conference
Ranganathan, K; Walker, WF
Published in: Proceedings - IEEE Ultrasonics Symposium
December 1, 2004

The resolution of medical ultrasound systems is usually characterized by the width of the mainlobe, typically the full width at half maximum (FWHM), in beamplots. The FWHM has, however, been shown to sometimes provide misleading information about systems. The concept of "cystic resolution", in which performance is quantified as the size of the void that produces a specified contrast, has been previously introduced to medical ultrasound. We extend the concept and develop a general metric to analyze the 3D broadband performance of arbitrary ultrasound systems. We provide an example of application in which we compare the performance of a conventional system using a 1D array and time delay beamforming of radio frequency (RF) data to that of a system based on a 2D array that focuses solely via phase rotation of complex I/Q data formed by directly sampling the received RF signal. © 2004 IEEE.

Duke Scholars

Published In

Proceedings - IEEE Ultrasonics Symposium

ISSN

1051-0117

Publication Date

December 1, 2004

Volume

3

Start / End Page

1737 / 1740
 

Citation

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Ranganathan, K., & Walker, W. F. (2004). A new performance analysis metric for medical ultrasound. In Proceedings - IEEE Ultrasonics Symposium (Vol. 3, pp. 1737–1740).
Ranganathan, K., and W. F. Walker. “A new performance analysis metric for medical ultrasound.” In Proceedings - IEEE Ultrasonics Symposium, 3:1737–40, 2004.
Ranganathan K, Walker WF. A new performance analysis metric for medical ultrasound. In: Proceedings - IEEE Ultrasonics Symposium. 2004. p. 1737–40.
Ranganathan, K., and W. F. Walker. “A new performance analysis metric for medical ultrasound.” Proceedings - IEEE Ultrasonics Symposium, vol. 3, 2004, pp. 1737–40.
Ranganathan K, Walker WF. A new performance analysis metric for medical ultrasound. Proceedings - IEEE Ultrasonics Symposium. 2004. p. 1737–1740.

Published In

Proceedings - IEEE Ultrasonics Symposium

ISSN

1051-0117

Publication Date

December 1, 2004

Volume

3

Start / End Page

1737 / 1740