Suppression of large intraluminal bubble expansion in shock wave lithotripsy without compromising stone comminution: Refinement of reflector geometry
Publication
, Journal Article
Zhou, YF; Zhong, P
Published in: Journal Of The Acoustical Society Of America
January 2003
Duke Scholars
Published In
Journal Of The Acoustical Society Of America
ISSN
0001-4966
Publication Date
January 2003
Volume
113
Issue
1
Start / End Page
586 / 597
Related Subject Headings
- Models, Cardiovascular
- Lithotripsy
- Kidney Calculi
- Humans
- Equipment Safety
- Equipment Design
- Blood Vessels
- Air Pressure
- Acoustics
Citation
APA
Chicago
ICMJE
MLA
NLM
Zhou, Y. F., & Zhong, P. (2003). Suppression of large intraluminal bubble expansion in shock wave lithotripsy without compromising stone comminution: Refinement of reflector geometry. Journal Of The Acoustical Society Of America, 113(1), 586–597.
Zhou, Y. F., and P. Zhong. “Suppression of large intraluminal bubble expansion in shock wave lithotripsy without compromising stone comminution: Refinement of reflector geometry.” Journal Of The Acoustical Society Of America 113, no. 1 (January 2003): 586–97.
Zhou YF, Zhong P. Suppression of large intraluminal bubble expansion in shock wave lithotripsy without compromising stone comminution: Refinement of reflector geometry. Journal Of The Acoustical Society Of America. 2003 Jan;113(1):586–97.
Zhou, Y. F., and P. Zhong. “Suppression of large intraluminal bubble expansion in shock wave lithotripsy without compromising stone comminution: Refinement of reflector geometry.” Journal Of The Acoustical Society Of America, vol. 113, no. 1, Jan. 2003, pp. 586–97.
Zhou YF, Zhong P. Suppression of large intraluminal bubble expansion in shock wave lithotripsy without compromising stone comminution: Refinement of reflector geometry. Journal Of The Acoustical Society Of America. 2003 Jan;113(1):586–597.
Published In
Journal Of The Acoustical Society Of America
ISSN
0001-4966
Publication Date
January 2003
Volume
113
Issue
1
Start / End Page
586 / 597
Related Subject Headings
- Models, Cardiovascular
- Lithotripsy
- Kidney Calculi
- Humans
- Equipment Safety
- Equipment Design
- Blood Vessels
- Air Pressure
- Acoustics