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光纤准直技术对808纳米波长激光刺激耳蜗神经元的影响。

Effect of Fiberoptic Collimation Technique on 808 nm Wavelength Laser Stimulation of Cochlear Neurons.

作者信息

Wang Jingxuan, Lu Jianren, Tian Lan

机构信息

School of Information Science and Engineering, Shandong University , Jinan 250100, Shandong, China .

出版信息

Photomed Laser Surg. 2016 Jun;34(6):252-7. doi: 10.1089/pho.2015.4065. Epub 2016 Mar 15.

Abstract

OBJECTIVE

The purpose of this study was to evaluate the effects of fiberoptic collimation technique on auditory neural stimulation in the cochlea with 808 nm wavelength lasers.

BACKGROUND DATA

Recently, the pulsed near-infrared lasers in the 800-1000 nm wavelength range have been investigated as an emerging technique to trigger auditory neural response in the cochlea. A laser beam divergence in the optical stimulation pathway exists, which may affect stimulation efficiency and spatial selectivity.

METHODS

The fiberoptic collimation technique was proposed for cochlear neuron stimulation, and the C-lens element was designed as the collimation structure. The spiral ganglion cells in deafened guinea pigs' cochlea were irradiated with collimated and uncollimated near-infrared lasers. Optically evoked auditory brainstem response (OABR) under the two laser output modes were recorded.

RESULTS

Laser with the collimation technique evoked an average 58% higher OABR amplitude than the uncollimated laser output. In addition, the collimated laser setup consumed on average 35.2% of laser energy compared with the uncollimated laser when evoking the same OABR amplitude.

CONCLUSIONS

The fiberoptic collimation technique improved stimulation efficiency and reduced stimulating energy consumption in near-infrared neural stimulation in cochlea. The positive effects of laser collimation technique could benefit further research in optically based cochlear implants.

摘要

目的

本研究旨在评估光纤准直技术对808 nm波长激光在耳蜗中听觉神经刺激的影响。

背景资料

最近,800 - 1000 nm波长范围内的脉冲近红外激光已作为一种触发耳蜗听觉神经反应的新兴技术进行研究。在光刺激路径中存在激光束发散,这可能会影响刺激效率和空间选择性。

方法

提出将光纤准直技术用于耳蜗神经元刺激,并将C透镜元件设计为准直结构。用准直和未准直的近红外激光照射耳聋豚鼠耳蜗中的螺旋神经节细胞。记录两种激光输出模式下的光诱发听觉脑干反应(OABR)。

结果

采用准直技术的激光诱发的OABR振幅平均比未准直的激光输出高58%。此外,在诱发相同的OABR振幅时,与未准直的激光相比,准直激光装置平均消耗的激光能量为35.2%。

结论

光纤准直技术提高了耳蜗近红外神经刺激的刺激效率并降低了刺激能量消耗。激光准直技术的积极作用可能有益于基于光学的人工耳蜗的进一步研究。

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