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DOI: 10.1055/s-2003-41617
Experimental and Clinical Study of a Holmium: YAG Laser with Adjustable Pulse Duration
Experimentelle und klinische Studie eines Holmium:YAG-Lasers mit einstellbarer PulsationsdauerPublication History
Publication Date:
25 August 2003 (online)

Abstract
Background: The holmium:YAG laser is used for treatment of urolithiasis, transurethral laser ablation for benign prostate hypertrophy and bladder tumor. The pulse duration was fixed in the previous Ho:YAG laser systems. We have evaluated more practical pulse durations to disintegrate the stone. The SPHINX Ho40 (Heraeus Corporation) can change the pulse duration freely in the range from 150 µsec. to 800 µsec. Materials and Methods: 1) We measured the total energy to perforate through stone models at three different pulse durations (150, 300, 600 µsec.). 2) We experimented with the energy of each single pulse and the power of the shock wave. 3) We observed thermogenesis during the lithotripsy for each pulse duration. 4) Disintegration effects of Ho:YAG are compared with other lithotripsy systems in clinical cases. Results: 1) It was possible that the smallest amount of the total energy went through the fragment at the pulse duration 150 µsec. 2) The maximum amount of energy of the wave is higher when the pulse duration is short. Although the amount of energy was 12.6 V, the amounts of energy at 800 µsec decreased with a pulse duration 150 µsec. to 6.46 V which was about 40 % 3) The highest temperatures achieved when the irradiation of laser was started and finished were compared. The shorter the pulse duration was, the higher was the peak power. The shock wave was also more effective to disintegrate stones on using short pulse durations. 4) The individual clinical success rates are Ho:YAG (85.1 %), Alexandrite (80.6 %) and Lithoclast (74.5 %).
Key words
Ho:YAG laser system - laser lithotripsy - shock wave
References
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T. Yoshida, M. D.
Department of Urology · Nihon University School of Medicine
Tokyo
Japan
Phone: +81-33972-8111
Fax: +81-33972-5930
Email: wayne@med.nikon-u.ac.jp