首页> 外文会议>Conference on Lasers in Surgery: Advanced Characterization, Therapeutics, and Systems Ⅻ Jan 19-20, 22, 2002 San Jose, USA >In Vitro Assessment of Ho: YAG Laser Lithotripsy for the Treatment of Canine Urolithiasis
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In Vitro Assessment of Ho: YAG Laser Lithotripsy for the Treatment of Canine Urolithiasis

机译:Ho:YAG激光碎石术治疗犬尿石症的体外评估

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摘要

The Ho:YAG laser, used successfully in humans, may be effective for treating canine urolithiasis. The purpose of this study was to determine the in vitro effects of various Ho:YAG laser operating parameters on canine uroliths and a urethra model. Canine uroliths of known composition and cadaveric porcine urethral tissue were irradiated with the Ho:YAG laser. Fragmentation time was analyzed as a function of urolith composition, water weight, Hertz, pulse mode, and energy. All uroliths were completely fragmented with 20 seconds or less of laser irradiation. Calcium oxalate, cystine, and silica uroliths had significantly longer fragmentation times than struvite and urate uroliths. As Hertz rate increased, fragmentation time significantly decreased. No significant differences were noted in fragmentation time or total energy required for fragmentation between single and double pulse mode. Grossly visible urethral damage increased as total energy increased. Urethral damage scores were significantly higher in tissues treated with a 90° incident beam compared to those tissues treated with a 30° incident beam. Likewise, urethral damage scores were significantly higher in contact mode treated tissues compared to non-contact mode treated tissues. Based on these findings, the Ho:YAG laser may be useful for treating clinical cases of canine urolithiasis.
机译:在人类中成功使用的Ho:YAG激光可能有效治疗犬尿石症。这项研究的目的是确定各种Ho:YAG激光操作参数对犬尿石和尿道模型的体外影响。用Ho:YAG激光照射已知成分的犬尿石和尸体猪尿道组织。分析碎裂时间与尿石成分,水重量,赫兹,脉冲模式和能量的关系。用20秒或更短的激光照射时间,所有尿石都被完全破碎。草酸钙,胱氨酸和二氧化硅尿石的碎裂时间比鸟粪石和尿酸盐尿石的碎裂时间长得多。随着赫兹频率的增加,碎片时间明显减少。在单脉冲和双脉冲模式之间的碎裂时间或碎裂所需的总能量方面,没有发现显着差异。随着总能量的增加,可见的尿道损伤明显增加。与经30°入射光束处理的组织相比,经90°入射光束处理的组织的尿道损伤评分明显更高。同样,与非接触模式治疗的组织相比,接触模式治疗的组织的尿道损伤评分明显更高。基于这些发现,Ho:YAG激光可用于治疗犬尿石症的临床病例。

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