Literature DB >> 9400428

Holmium:YAG lithotripsy yields smaller fragments than lithoclast, pulsed dye laser or electrohydraulic lithotripsy.

J M Teichman1, G J Vassar, J T Bishoff, G C Bellman.   

Abstract

PURPOSE: The mechanism of lithotripsy differs among electrohydraulic lithotripsy, mechanical lithotripsy, pulsed dye lasers and holmium:YAG lithotripsy. It is postulated that fragment size from each of these lithotrites might also differ. This study tests the hypothesis that holmium:YAG lithotripsy yields the smallest fragments among these lithotrites.
MATERIALS AND METHODS: We tested 3F electrohydraulic lithotripsy, 2 mm. mechanical lithotripsy, 320 microns pulsed dye lasers and 365 microns. holmium:YAG fiber on stones composed of calcium hydrogen phosphate dihydrate, calcium oxalate monohydrate, cystine, magnesium ammonium phosphate and uric acid. Fragments were dessicated and sorted by size. Fragment size distribution was compared among lithotrites for each composition.
RESULTS: Holmium:YAG fragments were significantly smaller on average than fragments from the other lithotrites for all compositions. There were no holmium:YAG fragments greater than 4 mm., whereas there were for the other lithotrites. Holmium:YAG had significantly greater weight of fragments less than 1 mm. compared to the other lithotrites.
CONCLUSIONS: Holmium:YAG yields smaller fragments compared to electrohydraulic lithotripsy, mechanical lithotripsy or pulsed dye lasers. These findings imply that fragments from holmium:YAG lithotripsy are more likely to pass without problem compared to the other lithotrites. Furthermore, the significant difference in fragment size adds evidence that holmium:YAG lithotripsy involves vaporization.

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Year:  1998        PMID: 9400428     DOI: 10.1016/s0022-5347(01)63998-3

Source DB:  PubMed          Journal:  J Urol        ISSN: 0022-5347            Impact factor:   7.450


  39 in total

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Review 2.  Holmium laser for stone management.

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5.  Influence of saline on temperature profile of laser lithotripsy activation.

Authors:  Wilson R Molina; Igor N Silva; Rodrigo Donalisio da Silva; Diedra Gustafson; David Sehrt; Fernando J Kim
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Review 6.  Holmium : YAG Laser for Intra Corporeal Lithotripsy.

Authors:  A S Sandhu; A Srivastava; P Madhusoodanan; T Sinha; S K Gupta; A Kumar; G S Sethi; R Khanna
Journal:  Med J Armed Forces India       Date:  2011-07-21

7.  Holmium: YAG laser lithotripsy for gallstones. A preliminary report.

Authors:  J M Teichman; W H Schwesinger; J Lackner; R M Cossman
Journal:  Surg Endosc       Date:  2001-07-05       Impact factor: 4.584

8.  Is routine ureteral stenting necessary after uncomplicated ureteroscopic lithotripsy for lower ureteral stones larger than 1 cm?

Authors:  Kenan Isen; Isen Kenan; Salih Bogatekin; Bogatekin Salih; Suat Em; Em Suat; Huseyin Ergin; Ergin Huseyin; Vehbi Kilic; Kilic Vehbi
Journal:  Urol Res       Date:  2008-04-02

9.  Ureteroscopic holmium: YAG laser lithotripsy for managing ureteral calculi (a report of 168 cases).

Authors:  Zili Pang; Chuanguo Xiao; Fuqing Zeng
Journal:  J Huazhong Univ Sci Technolog Med Sci       Date:  2004

10.  Accessory instrumentation in flexible ureteroscopy: Evidence-based recommendation.

Authors:  Timothy Holden; Renato Nardi Pedro; Monoj Monga
Journal:  Indian J Urol       Date:  2008-10
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