>Laser treatment on a large size of prostate gland often encounters significant bleeding that can prolong the entire procedure and cause urinary complicat'/> Dual‐wavelength‐assisted thermal hemostasis for treatment of benign prostate hyperplasia
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Dual‐wavelength‐assisted thermal hemostasis for treatment of benign prostate hyperplasia

机译:双波长辅助热止血,用于治疗良性前列腺增生

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>Laser treatment on a large size of prostate gland often encounters significant bleeding that can prolong the entire procedure and cause urinary complications. The current study investigates the feasibility of dual‐wavelength (532 and 980?nm) application to achieve rapid hemostasis for 532‐nm laser prostatectomy. Porcine kidney and bleeding phantom models were tested to quantify the degree of the irreversible tissue coagulation and to estimate the time for the complete hemostasis, respectively. The ex vivo kidney testing verifies that the dual‐wavelength created up to 40% deeper and 25% wider coagulation regions than a single wavelength does. The bleeding phantom testing demonstrates that due to the enhanced thermal effects, the simultaneous irradiation yields the complete photocoagulation (~11?seconds) whereas 532 or 980?nm hardly stops bleeders. Numerical simulations validate that the combined optical‐thermal characteristics of both the wavelengths account for the augmented thermal coagulation. The dual‐wavelength‐assisted coagulation can be a feasible treatment to entail the rapid hemostasis and to facilitate the laser prostatectomy in an effective manner.
机译: >激光处理大尺寸的前列腺常常遇到显着的出血,可以延长整个程序并引起尿发复杂性。目前的研究调查了双波长(532和980〜NM)应用来实现532纳米激光前列腺切除术快速止血的可行性。检测猪肾和出血幻影模型以量化不可逆组织凝固的程度,分别估计完全止血的时间。 exvivo肾脏检测验证的是,二元波长产生高达40%的更深和25%更宽的凝固区域,而不是单波长。出血的幻影测试表明,由于热效应增强,同时照射产生完全的光凝(〜11秒),而532或980?NM几乎没有停止渗流。数值模拟验证了波长的组合光学 - 热特性,用于增强热凝固。双波长辅助凝固可以是可行的治疗,以便以有效的方式促进激光前列腺切除术。

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