Literature DB >> 3765221

[Disintegration of kidney calculi by piezoelectrically generated high-energy sound waves. Physical principles and experimental studies].

R Riedlinger, F Ueberle, H Wurster, W Krauss, P Vallon, G Konrad, B Kopper, H P Stoll, R Goebbels, T Gebhardt.   

Abstract

The recently developed equipment for extracorporeal piezoelectric lithotripsy (EPL) represents an improvement concerning the shock-wave-induced disintegration of urinary calculi. While the usual spark gap transmitter needs a focusing reflector, the piezoelectric lithotriptor is based on a self-focusing spherical bowl transmitter. The stone is detected exclusively by ultrasound. For this purpose, an integrated sector scanner is used as well as the high-energy sound transmitter itself. With the piezoelectrically generated high-energy sound pulses we have succeeded in completely disintegrating implanted stones in the renal pelvis of dogs without injuring the morphology or function of the exposed kidneys.

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Year:  1986        PMID: 3765221

Source DB:  PubMed          Journal:  Urologe A        ISSN: 0340-2592            Impact factor:   0.639


  4 in total

1.  [Extracorporeal shockwave lithotripsy (ESWL). Chronology of the development].

Authors:  F Eisenberger; C Chaussy; B Forssmann
Journal:  Urologe A       Date:  2007-09       Impact factor: 0.639

Review 2.  ESWL '90--state of the art. Limitations and future trends of shock-wave lithotripsy.

Authors:  J Rassweiler; P Alken
Journal:  Urol Res       Date:  1990

3.  Side-effects of extracorporeal piezoelectric shock wave lithotripsy (EPL).

Authors:  W Vahlensieck; H J Kürz; H Steinhauer; H Friedburg; H Sommerkamp
Journal:  Urol Res       Date:  1990

Review 4.  Extracorporeal shockwave lithotripsy of gallstones. Possibilities and limitations.

Authors:  H Vergunst; O T Terpstra; K Brakel; J S Laméris; M van Blankenstein; F H Schröder
Journal:  Ann Surg       Date:  1989-11       Impact factor: 12.969

  4 in total

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