Chinese Journal of Lasers, Volume. 49, Issue 1, 0101015(2022)
Exploration of Thulium-Doped Fiber Lasers in Lithotripsy in vitro
[1] Fried N M, Irby P B. Advances in laser technology and fibre-optic delivery systems in lithotripsy[J]. Nature Reviews Urology, 15, 563-573(2018).
[2] Liang H, Liang L, Yu Y et al. Thermal effect of holmium laser during ureteroscopic lithotripsy[J]. BMC Urology, 20, 69(2020).
[3] Lee H, Kang H W, Teichman J M et al. Urinary calculus fragmentation during Ho∶YAG and Er∶YAG lithotripsy[J]. Lasers in Surgery and Medicine, 38, 39-51(2006).
[4] Qiu J Z, Teichman J, Wang T Y et al. Comparison of fluoride and sapphire optical fibers for Er∶YAG laser lithotripsy[J]. Journal of Biophotonics, 3, 277-283(2010).
[5] Zhang J J, Rajabhandharaks D, Xuan J R et al. Water content contribution in calculus phantom ablation during Q-switched Tm∶YAG laser lithotripsy[J]. Journal of Biomedical Optics, 20, 128001(2015).
[6] Kamal W, Kallidonis P, Koukiou G et al. Stone retropulsion with Ho∶YAG and Tm∶YAG lasers: a clinical practice-oriented experimental study[J]. Journal of Endourology, 30, 1145-1149(2016).
[7] Fried N M. Thulium fiber laser lithotripsy: an in vitro analysis of stone fragmentation using a modulated 110-Watt thulium fiber laser at 1.94 μm[J]. Lasers in Surgery and Medicine, 37, 53-58(2005).
[8] Scott N J, Cilip C M, Fried N M. Thulium fiber laser ablation of urinary stones through small-core optical fibers[J]. IEEE Journal of Selected Topics in Quantum Electronics, 15, 435-440(2009).
[9] Wilson C R, Hutchens T C, Hardy L A et al. A miniaturized, 1.9F integrated optical fiber and stone basket for use in thulium fiber laser lithotripsy[J]. Journal of Endourology, 29, 1110-1114(2015).
[10] Hardy L A, Vinnichenko V, Fried N M. High power holmium∶YAG versus thulium fiber laser treatment of kidney stones in dusting mode: ablation rate and fragment size studies[J]. Lasers in Surgery and Medicine, 51, 522-530(2019).
[11] Andreeva V, Vinarov A, Yaroslavsky I et al. Preclinical comparison of superpulse thulium fiber laser and a holmium∶YAG laser for lithotripsy[J]. World Journal of Urology, 38, 497-503(2020).
[12] Ellison J S, MacConaghy B, Hall T L et al. A simulated model for fluid and tissue heating during pediatric laser lithotripsy[J]. Journal of Pediatric Urology, 16, 626.e1-626.e8(2020).
[13] Molina W R, Carrera R V, Chew B H et al. Temperature rise during ureteral laser lithotripsy: comparison of super pulse thulium fiber laser (SPTF) vs high power 120 W holmium-YAG laser (Ho∶YAG)[J]. World Journal of Urology, 39, 3951-3956(2021).
[14] Keller EX, de Coninck V, Doizi S et al. Thulium fiber laser: ready to dust all urinary stone composition types?[J]. World Journal of Urology, 39, 1693-1698(2021).
[15] Huo Y F. Clinical effects of 2-micron radon laser treatment complex urinary system stones[J]. Health for Everyone, 89(2020).
[16] Liao G Y. Clinical efficacy of percutaneous renal mirror laser gravel treatment of renal diverticulum stones[J]. Laboratory Medicine and Clinic, 15, 2959-2960(2018).
[17] Sun F, Zhai Y Z, Chen B C et al. Efficacy and safety of combined application of flexible cystoscopy and thulium laser in standard percutaneous nephrolithotomy for complex renal calculi[J]. Chinese Journal of Laser Medicine & Surgery, 26, 181-184(2017).
[18] Lindau O, Lauterborn W. Cinematographic observation of the collapse and rebound of a laser-produced cavitation bubble near a wall[J]. Journal of Fluid Mechanics, 479, 327-348(2003).
[19] Sperrin M, Rogers K. Determination of the shock wave intensity from a laser lithotriptor using a bi-laminar hydrophone[C](1999).
[20] Lekarev V, Dymov A, Vinarov A et al. Mechanism of lithotripsy by superpulse thulium fiber laser and its clinical efficiency[J]. Applied Sciences, 10, 7480(2020).
[21] Ye X[D]. The mechanism and key technology of thulium laser lithotripsy(2020).
[22] Traxer O, Keller E X. Thulium fiber laser: the new player for kidney stone treatment? A comparison with holmium∶YAG laser[J]. World Journal of Urology, 38, 1883-1894(2020).
[23] Hardy L A[D]. Improving thulium fiber laser lithotripsy efficiency, 4-6(2018).
[24] Huang C Y, Liu L, Li Z J. Advances in the application and mechanism of laser lithotripsy[J]. Chinese Journal of Laser Medicine & Surgery, 14, 390-393(2005).
Get Citation
Copy Citation Text
Yu Lin, Minqiu Liu, Deqin Ouyang, Kefeng Xiao, Yewang Chen, Qitao Lü, Shuangchen Ruan. Exploration of Thulium-Doped Fiber Lasers in Lithotripsy in vitro[J]. Chinese Journal of Lasers, 2022, 49(1): 0101015
Category: laser devices and laser physics
Received: Sep. 1, 2021
Accepted: Oct. 21, 2021
Published Online: Dec. 13, 2021
The Author Email: Ouyang Deqin (ouyangdeqin@sztu.edu.cn)