Wess O et al., 2018: Fragmentation of brittle material by shock wave lithotripsy. Momentum transfer and inertia: a novel view on fragmentation mechanisms

Othmar J. Wess, Juergen Mayer
Storz Medical AG, Lohstampfestrasse 8, 8274, Taegerwilen, Switzerland.

Weiterlesen
0
  7072 Aufrufe

Li G et al, 2017: Evaluation of an experimental electrohydraulic discharge device for extracorporeal shock wave lithotripsy: Pressure field of sparker array.

Li G, Connors BA, Schaefer RB, Gallagher JJ, Evan AP.
School of Physics, Northeast Normal University, Changchun, 130024, People's Republic of China.
Department of Anatomy and Cell Biology, Indiana University School of Medicine, Medical Science Building, Room 0051, 635 Barnhill Drive, Indianapolis, Indiana 46202, USA.
Phoenix Science and Technology, C/O John Gallagher, 12 Van Buren Circle, Goffstown, New Hampshire 03045, USA.
Phoenix Science and Technology, 12 Van Buren Circle, Goffstown, New Hampshire 03045, USA.

Weiterlesen
0
  9720 Aufrufe

Hoy NY et al, 2016: Are We Banging Our Heads Against the Wall? The Effect of Treatment Head Wear on the Outcomes of Extracorporeal Shockwave Lithotripsy.

Hoy NY, Shapka L, Rudzinski J, Schuler TD, Wollin TA, Bochinski D, De SK.
Division of Urology, University of Alberta , Edmonton, Canada.

Weiterlesen
0
  10405 Aufrufe

Ohl SW et al, 2016: Lithotripter shock wave interaction with a bubble near various biomaterials.

Ohl SW, Klaseboer E, Szeri AJ, Khoo BC.
Institute of High Performance Computing, 1 Fusionopolis Way #16-16 Connexis, 138632, Singapore.

Weiterlesen
0
  10625 Aufrufe

Wang KG, 2016: Multiphase Fluid-Solid Coupled Analysis of Shock-Bubble-Stone Interaction in Shockwave Lithotripsy.

Wang KG
Department of Aerospace and Ocean Engineering, Virginia Tech, Blacksburg, 24061, VA, USA.

Weiterlesen
0
  10006 Aufrufe