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首页> 外文期刊>Journal of endourology >Noncontact stimulation of the cavernous nerves in the rat prostate using a tunable-wavelength thulium fiber laser.
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Noncontact stimulation of the cavernous nerves in the rat prostate using a tunable-wavelength thulium fiber laser.

机译:使用可调波长th光纤激光器对大鼠前列腺中的海绵体神经进行非接触式刺激。

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摘要

Background and Purpose: Laser nerve stimulation has recently been studied in neuroscience as an alternative to electrical stimulation. Its advantages include noncontact stimulation, better spatial selectivity, and elimination of electrical stimulation artifacts. This study explored laser stimulation of the rat cavernous nerves as a potential alternative to electrical nerve mapping during nerve-sparing radical prostatectomy. Materials and Methods: The cavernous nerves were surgically exposed in 10 male rats. A thulium fiber laser stimulated the nerves, with a wavelength of 1870 nm, pulse energy of 7.5 mJ, radiant exposure of 1 J/cm(2), pulse duration of 2.5 msec, pulse rate of 10 Hz, and 1-mm laser spot diameter, for a stimulation time of 60 sec. Results and Conclusion: A significant increase in the intracavernosal pressure was detected on laser stimulation, with pressure returning to baseline values after stimulation ceased. This study demonstrates the feasibility of noncontact stimulation of the cavernous nerves using near-infrared laser radiation.
机译:背景与目的:激光神经刺激最近已在神经科学领域得到研究,可以替代电刺激。它的优点包括非接触刺激,更好的空间选择性以及消除电刺激伪影。这项研究探索了激光刺激大鼠海绵状神经,作为在保留神经的根治性前列腺切除术中电神经定位的潜在替代方法。材料与方法:手术切除10只雄性大鼠的海绵状神经。 ul光纤激光刺激神经,波长为1870 nm,脉冲能量为7.5 mJ,辐射暴露为1 J / cm(2),脉冲持续时间为2.5毫秒,脉冲频率为10 Hz,激光点为1毫米直径,刺激时间为60秒。结果与结论:激光刺激后发现海绵体腔内压力显着增加,刺激停止后压力恢复到基线值。这项研究证明了使用近红外激光辐射非接触性刺激海绵状神经的可行性。

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