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Sensors (Basel, Switzerland)|October 17, 2015
Piezoelectric energy harvesting in internal fluid flowHyeong Jae Lee, Stewart Sherrit, Luis Phillipe Tosi, et al.Journal of Physics. Conference Series|April 19, 2016
Modeling and experimental analysis of acoustic cavitation bubbles for Burst Wave LithotripsyKazuki Maeda, Tim Colonius, Wayne Kreider, et al.Soft Matter|April 15, 2026
Hierarchical Bayesian constitutive model selection for high-strain-rate soft material characterizationVictor Sanchez, Sawyer Remillard, Bachir A Abeid, et al.Soft Matter|August 11, 2025
Parsimonious inertial cavitation rheometry <i>via</i> bubble collapse timeZhiren Zhu, Sawyer Remillard, Bachir A Abeid, et al.The Journal of the Acoustical Society of America|January 1, 2022
Real-time supersonic jet noise predictions from near-field sensors with a wavepacket modelVitor G Kleine, Kenzo Sasaki, André V G Cavalieri, et al.The Journal of the Acoustical Society of America|March 2, 2022
Introduction to the special issue on supersonic jet noiseAlan T Wall, Kent L Gee, Philip J Morris, et al.Soft Matter|February 15, 2021
Acoustic cavitation rheometryLauren Mancia, Jin Yang, Jean-Sebastien Spratt, et al.The Journal of the Acoustical Society of America|August 3, 2019
High-speed video microscopy and numerical modeling of bubble dynamics near a surface of urinary stoneYuri A Pishchalnikov, William M Behnke-Parks, Kevin Schmidmayer, et al.Proceedings of Meetings on Acoustics. Acoustical Society of America|May 23, 2020
Experimental observations and numerical modeling of lipid-shell microbubbles with calcium-adhering moieties for minimally-invasive treatment of urinary stonesYuri A Pishchalnikov, William Behnke-Parks, Kazuki Maeda, et al.Journal of Endourology|October 21, 2003
Cavitation bubble cluster activity in the breakage of kidney stones by lithotripter shockwavesYuriy A Pishchalnikov, Oleg A Sapozhnikov, Michael R Bailey, et al.Pageof 4