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New concept of a compact multiwavelength solid state laser for laser-induced shock wave lithotripsy

机译:紧凑型多波长固态激光器用于激光诱发的冲击波碎石术的新概念

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Abstract: In the past a widespread use of pulsed solid-state and flashlamp-pumped pulsed dye lasers in the vast medical field of endoscopic laser-induced shock wave lithotripsy (LISL) of urinary, biliary, and salivary stones was hindered mainly by the facts that (1) the available systems were too expensive compared to other conventional therapies; (2) the laser systems of the first generation didn't ideally fit into existing operation rooms because they were bulky and heavy; (3) the laser systems - except for the non solid-state dye laser system - provided only a fixed wavelength for stone fragmentation. This paper reports on a new concept of a small size pulsed and tunable alexandrite laser system for laser-induced shock wave lithotripsy that could provide not only wavelengths in the fundamental region of 720-860 nm with high peak powers and high energy fluences but also in the frequency-doubled region of 360-430 nm. The fragmentation process is induced via the violet wavelengths and the fragmentation efficiency is reinforced via the fundamental wavelengths of the laser system.!
机译:摘要:过去,由于以下事实,阻碍了固态激光和闪光灯泵浦脉冲染料激光在内窥镜激光引起的尿,胆和唾液结石的冲击波碎石术(LISL)的广阔医学领域中的广泛使用(1)与其他传统疗法相比,现有系统过于昂贵; (2)第一代激光系统体积大且笨重,因此无法理想地安装到现有的手术室中; (3)除非固态染料激光系统外,激光系统仅提供固定的波长用于碎石。本文报道了一种用于激光诱发的冲击波碎石术的小尺寸脉冲可调谐翠绿宝石激光系统的新概念,该系统不仅可以提供具有高峰值功率和高能量注量的720-860 nm基本区域中的波长,而且还可以提供360-430 nm的倍频区域。碎裂过程是通过紫罗兰色的波长引起的,碎裂效率是通过激光系统的基本波长来增强的。

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