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首页> 外文期刊>BJU international >Preliminary evaluation of a novel side-fire diode laser emitting light at 940 nm, for the potential treatment of benign prostatic hyperplasia: ex-vivo and in-vivo investigations.
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Preliminary evaluation of a novel side-fire diode laser emitting light at 940 nm, for the potential treatment of benign prostatic hyperplasia: ex-vivo and in-vivo investigations.

机译:新型侧射二极管激光器在940 nm处发射光的初步评估,可用于良性前列腺增生的潜在治疗:体内和体外研究。

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摘要

OBJECTIVES: To evaluate, ex vivo and in vivo, the tissue-removal capacity and coagulation properties of a diode laser emitting light at 940 nm, as in the search for potential therapeutic strategies for benign prostatic hyperplasia that cause less morbidity than transurethral resection of the prostate (TURP), various types of lasers have been tested. MATERIALS AND METHODS: A diode laser system (prototype; wavelength 940 nm, Dornier MedTech, Wessling, Germany) was evaluated in an isolated, blood-perfused ex-vivo porcine kidney model at 10-60 W (five kidneys). An in-vivo beagle model was used to investigate the effects on six prostate lobes at a generator output power level of 200 W. After the laser treatment tissue were examined histologically to compare the depth of coagulation and vaporization. RESULTS: With increasing generator output power levels there was an increasing vaporization and coagulation ability for the diode laser at 940 nm in the ex-vivo model. At 60 W the mean (sd) vaporization depth was 1.72 (0.47) mm with a coagulation zone of 9.56 (0.26) mm. In vivo, the diode laser caused rapid ablation with no intraoperative haemorrhage. Histologically, the zone of coagulation had a mean (sd) depth of 4.25 (0.15) mm at 200 W. The tissue removal capacity was estimated at 0.874-1.583 g/min in vivo. CONCLUSIONS: Our findings indicate that diode-laser vaporization at 940 nm is feasible and might be effective for acutely relieving bladder outlet obstruction in an in-vivo setting. Due to its mean coagulation zone of 4.25 mm the diode laser seems to have effective haemostatic properties.
机译:目的:在离体和体内评估二极管激光器在940 nm处发射光的组织去除能力和凝血特性,以寻找可能导致前列腺癌的发病率比经尿道电切术少的良性前列腺增生的潜在治疗策略。前列腺(TURP),已经测试了各种类型的激光。材料与方法:在分离的,血液灌流的离体猪肾脏模型中,以10-60 W(五个肾脏)评估了二极管激光系统(原型;波长940 nm,德国韦斯林,Dornier MedTech)。使用体内比格犬模型研究发生器输出功率为200 W时对六个前列腺叶的影响。对激光治疗后的组织进行组织学检查,以比较凝结和汽化的深度。结果:随着发生器输出功率水平的提高,离体模型中940 nm处的二极管激光器的汽化和凝结能力增强。在60 W时,平均(sd)汽化深度为1.72(0.47)mm,凝结区为9.56(0.26)mm。在体内,二极管激光器可引起快速消融,而无术中出血。从组织学上看,凝结区在200 W时的平均(sd)深度为4.25(0.15)mm。体内组织去除能力估计为0.874-1.583 g / min。结论:我们的研究结果表明,在940 nm处进行二极管激光汽化是可行的,并且可能在体内缓解膀胱出口梗阻方面有效。由于其平均凝结区为4.25 mm,因此二极管激光器似乎具有有效的止血特性。

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