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首页> 外文期刊>Journal of endourology >Continuous-wave laser stimulation of the rat prostate cavernous nerves using a compact and inexpensive all single mode optical fiber system.
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Continuous-wave laser stimulation of the rat prostate cavernous nerves using a compact and inexpensive all single mode optical fiber system.

机译:使用紧凑且便宜的全单模光纤系统连续波激光刺激大鼠前列腺海绵体神经。

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摘要

BACKGROUND AND PURPOSE: Laser stimulation of the rat cavernous nerve (CN) recently has been demonstrated as an alternative to electrical stimulation for potential application in nerve mapping during nerve-sparing radical prostatectomy. Advantages include noncontact stimulation and improved spatial selectivity. Previous studies, however, have used large and/or expensive laser sources for stimulation. This study demonstrates the feasibility of optical stimulation of the rat CN, in vivo, using a compact, inexpensive all-single-mode fiberoptic system. MATERIALS AND METHODS: A 1455-nm wavelength infrared diode laser beam was coupled into a 9-mum-core single-mode fiber for delivery through a 10F laparoscopic probe and used for laser stimulation of the CN in a total of eight rats, in vivo. RESULTS: Laser stimulation of the CN was observed at threshold temperatures of 41 degrees C, with intracavernous pressure response times as short as 4 s, and magnitudes up to 50 mm Hg, compared with baselines of 10 mm Hg. CONCLUSION: This novel, all-single-mode-fiber laser nerve stimulation system introduces several advantages including: (1) lower cost laser; (2) more robust fiberoptic design, eliminating alignment and cleaning of bulk optical components; and (3) improved Gaussian spatial beam profile for simplified alignment of the laser beam with the nerve. With further development, laser nerve stimulation may be useful for identification and preservation of the CN during prostate cancer surgery.
机译:背景与目的:激光刺激大鼠海绵状神经(CN)最近已被证明是电刺激的替代方法,可在保留神经的前列腺癌根治术中应用于神经定位。优点包括非接触刺激和改善的空间选择性。然而,先前的研究已经使用大型和/或昂贵的激光源进行刺激。这项研究证明了使用紧凑,便宜的全单模光纤系统在体内对大鼠CN进行光刺激的可行性。材料与方法:将1455 nm波长的红外二极管激光束耦合到9芯单模光纤中,以通过10F腹腔镜探头进行传输,并在总共八只大鼠体内对CN进行激光刺激。 。结果:在阈值温度41摄氏度下观察到CN的激光刺激,海绵体内压力响应时间短至4 s,幅度最高为50毫米汞柱,而基线为10毫米汞柱。结论:这种新颖的全单模光纤激光神经刺激系统具有以下优点:(1)低成本的激光; (2)更坚固的光纤设计,消除了对大块光学组件的对准和清洁; (3)改进的高斯空间光束轮廓,以简化激光束与神经的对准。随着进一步的发展,激光神经刺激对于前列腺癌手术期间CN的鉴定和保存可能是有用的。

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