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Real-time imaging of tissue vibration using a two-dimensional speckle tracking system

Publication ,  Journal Article
Walker, WF; Friemel, BH; Bohs, LN; Trahey, GE
Published in: Proceedings of the IEEE Ultrasonics Symposium
December 1, 1993

Tumors in soft tissues are often detected because of their higher stiffness relative to surrounding tissues. A number of groups have constructed systems which attempt to estimate stiffness by imaging the propagation of low frequency (<1 KHz) mechanical waves using modified one-dimensional flow measurement techniques. We have constructed a system which utilizes a two-dimensional speckle tracking technique to measure vibrations in soft tissues in real-time. The vibration source and speckle tracking system are completely synchronous, so phase information is preserved. We describe the system and present the results of initial calibration studies.

Duke Scholars

Published In

Proceedings of the IEEE Ultrasonics Symposium

ISSN

1051-0117

Publication Date

December 1, 1993

Volume

2

Start / End Page

873 / 877
 

Citation

APA
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MLA
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Walker, W. F., Friemel, B. H., Bohs, L. N., & Trahey, G. E. (1993). Real-time imaging of tissue vibration using a two-dimensional speckle tracking system. Proceedings of the IEEE Ultrasonics Symposium, 2, 873–877.
Walker, W. F., B. H. Friemel, L. N. Bohs, and G. E. Trahey. “Real-time imaging of tissue vibration using a two-dimensional speckle tracking system.” Proceedings of the IEEE Ultrasonics Symposium 2 (December 1, 1993): 873–77.
Walker WF, Friemel BH, Bohs LN, Trahey GE. Real-time imaging of tissue vibration using a two-dimensional speckle tracking system. Proceedings of the IEEE Ultrasonics Symposium. 1993 Dec 1;2:873–7.
Walker, W. F., et al. “Real-time imaging of tissue vibration using a two-dimensional speckle tracking system.” Proceedings of the IEEE Ultrasonics Symposium, vol. 2, Dec. 1993, pp. 873–77.
Walker WF, Friemel BH, Bohs LN, Trahey GE. Real-time imaging of tissue vibration using a two-dimensional speckle tracking system. Proceedings of the IEEE Ultrasonics Symposium. 1993 Dec 1;2:873–877.

Published In

Proceedings of the IEEE Ultrasonics Symposium

ISSN

1051-0117

Publication Date

December 1, 1993

Volume

2

Start / End Page

873 / 877