Wang Jingxuan, Xia Ming, Lu Jianren, Li Chen, Tian Xu, Tian Lan
School of Information Science and Engineering, Shandong University, Jinan, Shandong, 250100, China.
Lasers Med Sci. 2015 Jul;30(5):1533-40. doi: 10.1007/s10103-015-1763-0. Epub 2015 May 7.
Previous research has shown that infrared neural stimulation (INS) could be an alternative approach to evoke auditory neural activities. The laser beam property of the fiber output is a considerable aspect of INS, and the corresponding effects on auditory responses in vivo deserve further discussions. The paper presents a beam-shaped infrared laser stimulation method of auditory nerves. Pulsed 980-nm fiber-coupled laser systems were used as the radiant sources. The gradient reflective index (GRIN) lens was added at the port of the optical fiber as a beam shaping structure. The laser spot sizes and properties between the beam-shaped output and the bare fiber output were preliminarily analyzed by a laser beam profiler. And further experiments in vivo with four deafened adult guinea pigs were conducted. Optically evoked auditory brainstem responses (OABRs) of the animal samples were recorded and compared under the two output configurations. The results show a decrease of the beam divergence compared to a bare output fiber, and the INS with a beam shaping design evokes above 13 % increase on OABR amplitudes than the bare fiber output, especially when enlarging the distance between the optical fiber and the nerve tissue. The beam shaping design can enhance the effect of INS for evoking auditory nerves, and it could be an optimized design in the future implementation of optical cochlear implants.
先前的研究表明,红外神经刺激(INS)可能是一种诱发听觉神经活动的替代方法。光纤输出的激光束特性是INS的一个重要方面,其对体内听觉反应的相应影响值得进一步探讨。本文提出了一种用于听觉神经的束状红外激光刺激方法。使用脉冲980纳米光纤耦合激光系统作为辐射源。在光纤端口添加渐变折射率(GRIN)透镜作为光束整形结构。通过激光光束分析仪初步分析了束状输出和裸光纤输出之间的激光光斑尺寸和特性。并对四只成年失聪豚鼠进行了进一步的体内实验。在两种输出配置下记录并比较了动物样本的光诱发听觉脑干反应(OABR)。结果表明,与裸输出光纤相比,光束发散度有所降低,并且具有光束整形设计的INS比裸光纤输出能使OABR振幅提高13%以上,特别是在增大光纤与神经组织之间的距离时。光束整形设计可以增强INS诱发听觉神经的效果,并且在未来光耳蜗植入物的实施中可能是一种优化设计。