DocumentCode
1158661
Title
Thulium Fiber Laser Ablation of Urinary Stones Through Small-Core Optical Fibers
Author
Scott, Nicholas J. ; Cilip, Christopher M. ; Fried, Nathaniel M.
Author_Institution
Dept. of Phys. & Opt. Sci., Univ. of North Carolina at Charlotte, Charlotte, NC
Volume
15
Issue
2
fYear
2009
Firstpage
435
Lastpage
440
Abstract
Complications during laser lithotripsy include optical fiber bending failure resulting in endoscope damage and low irrigation rates leading to poor visibility. Both problems are related to fiber diameter and limited by the holmium:YAG (Ho:YAG) laser (lambda = 2120 nm) multimode beam profile. This study exploits the thulium fiber laser (lambda = 1908 nm) beam profile for higher power transmission through smaller fibers. Thulium fiber laser radiation with 1 ms pulse duration, pulse rates of 10-30 Hz, and 70-mu m-diameter spot was coupled into silica fibers with 100, 150, and 200 mum core diameters. Fiber transmission, bending, and endoscope irrigation tests were performed. Damage thresholds for 100, 150, and 200 mum fibers averaged 40, 60, and > 80 W, respectively. Irrigation rates measured 35, 26, and 15 mL/min for no fiber, and 100 and 200 mum fibers. Thulium fiber laser energy of 70 mJ delivered at 20 Hz through a 100 mum fiber resulted in vaporization and fragmentation rates of 10 and 60 mg/min for uric acid stones. The thulium fiber laser beam profile provides higher laser power through smaller fibers than Ho:YAG laser, potentially reducing fiber failure and endoscope damage, and allowing greater irrigation rates for improved visibility.
Keywords
endoscopes; fibre lasers; kidney; laser ablation; laser applications in medicine; laser beams; optical fibres; surgery; thulium; JkJk:Tm; endoscope irrigation test; endoscopes; energy 70 mJ; fragmentation rates; laser lithotripsy; multimode beam profile; power transmission; size 100 mum; size 150 mum; size 200 mum; size 70 mum; small-core optical fibers; thulium fiber laser ablation; time 1 ms; uric acid stones; urinary stones; vaporization rate; wavelength 1908 nm; Ablation; fiber laser; fragmentation; holmium; lithotripsy; thulium; urinary stones;
fLanguage
English
Journal_Title
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
1077-260X
Type
jour
DOI
10.1109/JSTQE.2008.2012133
Filename
4783018
Link To Document