首页> 外文会议>Lasers in Surgery: Advanced Characterization, Therapeutics, and Systems VI >Preclinical assessment of the new 1440-nm-wavelength Nd:YAG laser for fragmenting ureteral calculi in an ex-vivo pig model
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Preclinical assessment of the new 1440-nm-wavelength Nd:YAG laser for fragmenting ureteral calculi in an ex-vivo pig model

机译:新型1440 nm波长Nd:YAG激光用于离体猪模型中输尿管结石破碎的临床前评估

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Abstract: The dual wavelength Nd:YAG (multi-YAG) laser has excellent stone ablating properties. To investigate the safety of this laser for fragmenting ureteral calculi, an ex vivo animal study was undertaken to study acute tissue interactions associated with multi-YAG laser lithotripsy. Human ureteral calculi were implanted in ureters harvested from swine (n equals 42). Direct vision ureteroscopic laser lithotripsy was performed while varying pulse energy (0.3 to 1.5 Joules) and pulse frequency (5 to 15 Hz). All ureters were then examined histologically, graded for tissue injury, and compared to controls. Photofragmentation was associated with mucosal denudation and/or focal mucosal necrosis (grade 0 and 1) in 37/42 cases. Four treatments caused necrosis involving up to two thirds of the ureteral wall (grade 2) and 1/42 had grade 3 changes (transmural necrosis). Ureteroscopic examination alone produced grade 0 to 1 injuries. Logistic regression analysis revealed that pulse energy (p equals 0.47), total energy used for fragmentation (p equals 0.82), and stone weight (p equals 0.64) were not significant predictors of higher grade tissue injury. Pulse frequency (p equals 0.14) began to approach significance. Of the five ureters with grade 2 or greater injury, four were associated with a pulse frequency of 15 Hz. Our findings show that multi-YAG laser lithotripsy is associated with acute tissue changes ranging from mucosal denudation to different levels of coagulative necrosis. Low grade injury is most common and would have minimal potential for strictures. Although higher grade tissue injury is possible, all grade 2 and 3 injuries were microscopically focal in nature. Therefore, multi-YAG laser lithotripsy can be performed with acceptable levels of acute tissue injury at pulse energies up to 1.5 Joules and at pulse frequencies less than 15 Hz. !2
机译:摘要:双波长Nd:YAG(multi-YAG)激光器具有出色的石材烧蚀性能。为了研究该激光碎裂输尿管结石的安全性,进行了一项离体动物研究,以研究与多YAG激光碎石术相关的急性组织相互作用。将人输尿管结石植入从猪收获的输尿管中(n等于42)。进行直视输尿管镜激光碎石术,同时改变脉冲能量(0.3至1.5焦耳)和脉冲频率(5至15 Hz)。然后对所有输尿管进行组织学检查,对组织损伤进行分级,并与对照进行比较。光碎裂与粘膜剥脱和/或局灶性粘膜坏死(0和1级)相关(37/42例)。四种治疗引起坏死,占输尿管壁的三分之二(2级),而1/42发生3级改变(透壁坏死)。单独的输尿管镜检查会造成0到1级伤害。 Logistic回归分析显示,脉冲能量(p等于0.47),用于碎裂的总能量(p等于0.82)和结石重量(p等于0.64)不是较高等级组织损伤的重要指标。脉冲频率(p等于0.14)开始接近有效值。在5个损伤程度为2级或更高的输尿管中,有4个的脉冲频率为15 Hz。我们的研究结果表明,多YAG激光碎石术与急性组织改变(从粘膜剥脱到不同程度的凝固性坏死)相关。低等级伤害是最常见的情况,发生狭窄的可能性很小。尽管可能发生更高级别的组织损伤,但实际上所有2级和3级损伤都是显微镜下可见的。因此,多YAG激光碎石术可以在高达1.5焦耳的脉冲能量和小于15 Hz的脉冲频率下以可接受的急性组织损伤水平进行。 !2

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