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Optical stimulation of the prostate nerves: A potential diagnostic technique.

机译:光学刺激前列腺神经:一种潜在的诊断技术。

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摘要

There is wide variability in sexual potency rates (9--86%) after nerve-sparing prostate cancer surgery due to limited knowledge of the location of the cavernous nerves (CN's) on the prostate surface, which are responsible for erectile function. Thus, preservation of the CN's is critical in preserving a man's ability to have spontaneous erections following surgery.;Nerve-mapping devices, utilizing conventional Electrical Nerve Stimulation (ENS) techniques, have been used as intra-operative diagnostic tools to assist in preservation of the CN. However, these technologies have proven inconsistent and unreliable in identifying the CN's due to the need for physical contact, the lack of spatial selectivity, and the presence of electrical artifacts in measurements. Optical Nerve Stimulation (ONS), using pulsed infrared laser radiation, is studied as an alternative to ENS.;The objective of this study is sevenfold: (1) to develop a laparoscopic laser probe for ONS of the CN's in a rat model, in vivo; (2) to demonstrate faster ONS using continuous-wave infrared laser radiation; (3) to describe and characterize the mechanism of successful ONS using alternative laser wavelengths; (4) to test a compact, inexpensive all-single-mode fiber configuration for optical stimulation of the rat CN studies; (5) to implement fiber optic beam shaping methods for comparison of Gaussian and flat-top spatial beam profiles during ONS; (6) to demonstrate successful ONS of CN's through a thin layer of fascia placed over the nerve and prostate gland; and (7) to verify the experimentally determined therapeutic window for safe and reliable ONS without thermal damage to the CN's by comparison with a computational model for thermal damage.;A 5.5-Watt Thulium fiber laser operated at 1870 nm and two pigtailed, single mode, near-IR diode lasers (150-mW, 1455-nm laser and 500-mW, 1550-nm laser) were used for non-contact stimulation of the rat CN's. Successful laser stimulation, as measured by an intracavernous pressure (ICP) response in the penis, was achieved with the laser operating in CW mode. CW optical nerve stimulation provides a significantly faster ICP response time using a lower laser power laser than conventional pulsed stimulation.;An all-single-mode fiber design was successfully tested in a rat model. The CN reached a threshold temperature of ∼ 42 °C, with response times as short as 3 s, and ICP responses in the rat penis of up to 50 mmHg compared to a baseline of 5--10 mmHg. Chemical etching of the distal single-mode-fiber tip produced a concave shape and transformed the Gaussian to a flat-top spatial beam profile, resulting in simplified alignment of the laser beam with the nerve. This novel, all-single-mode-fiber laser nerve stimulation system introduces several advantages including: (1) a less expensive and more compact ONS configuration; (2) elimination of alignment and cleaning bulk optical components; and (3) improved spatial beam profile for simplified alignment.;For the fascia layers over the CN's (240--600 microm), the 1550 nm laser with an optical penetration depth of ∼ 930 microm in water was substituted for the 1455 nm laser. Successful ONS was achieved, for the first time, in fascia layers up to 450 microm thick which is critical for future clinical translation of this method for intra-operative identification and preservation of CN's during prostate cancer surgery.;In order to define the upper limit of the therapeutic window for ONS of CN in a rat model, in vivo, identification of the thermal damage threshold for the CN after laser irradiation was investigated by direct comparison of the visible thermal damage data with a theoretical thermal damage calculation utilizing a standard Arrhenius integral model.
机译:保留神经的前列腺癌手术后,由于对导致勃起功能的海绵状神经(CN's)​​位置的了解有限,因此在进行神经保护性前列腺癌手术后,性效能的差异很大(9--86%)。因此,CN的保存对于维持人手术后自发勃起的能力至关重要。神经映射设备已利用常规的电神经刺激(ENS)技术用作术中诊断工具,以帮助保存男性CN。但是,由于需要物理接触,缺乏空间选择性以及测量中存在电气伪像,这些技术已被证明在识别CN方面前后不一致且不可靠。研究了使用脉冲红外激光辐射替代ENS的光学神经刺激(ONS)。该研究的目标是七个方面:(1)在大鼠模型中,开发一种用于CN的ONS的腹腔镜激光探头。体内(2)使用连续波红外激光辐射展示更快的ONS; (3)描述和表征使用替代激光波长的成功ONS的机制; (4)测试一种紧凑,便宜的全单模光纤配置,用于大鼠CN研究的光刺激; (5)实施光纤光束整形方法,以比较ONS期间的高斯和平顶空间光束轮廓; (6)通过在神经和前列腺上覆盖一小层筋膜,证明CN成功完成ONS。 (7)通过与热损伤计算模型进行比较,验证实验确定的治疗窗口,以确保安全可靠的ONS,而不会对CN造成热损伤。;一台5.5瓦的fiber光纤激光器,工作于1870 nm,具有两个尾纤的单模,近红外二极管激光器(150mW,1455nm激光器和500mW,1550nm激光器)被用于大鼠CN的非接触式刺激。以阴茎海绵体内压力(ICP)响应测量,成功的激光刺激是通过以CW模式操作的激光实现的。与传统的脉冲刺激相比,CW光学神经刺激使用更低的激光功率激光提供了明显更快的ICP响应时间。在大鼠模型中成功测试了全单模光纤设计。 CN达到约42°C的阈值温度,响应时间短至3 s,而大鼠阴茎的ICP响应高达50 mmHg,而基线为5--10 mmHg。远端单模光纤尖端的化学蚀刻产生了凹形,并将高斯变换为平顶空间光束轮廓,从而简化了激光束与神经的对准。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)价格便宜,结构紧凑的ONS。 (2)消除对准和清洁大块光学元件; (3)改善空间光束轮廓以简化对准。;对于CN上的面板层(240--600微米),在水中的光学穿透深度为930微米的1550 nm激光器代替了1455 nm激光器。首次成功在厚达450微米的筋膜层中成功完成ONS,这对于该方法的未来临床翻译(对于在前列腺癌手术中术中识别和保存CN的方法)的未来临床至关重要。在大鼠模型中CN的治疗窗口的体内研究中,通过直接比较可见的热损伤数据与使用标准Arrhenius积分进行的理论热损伤计算,研究了激光照射后CN的热损伤阈值的鉴定模型。

著录项

  • 作者

    Tozburun, Serhat.;

  • 作者单位

    The University of North Carolina at Charlotte.;

  • 授予单位 The University of North Carolina at Charlotte.;
  • 学科 Engineering Biomedical.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 86 p.
  • 总页数 86
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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