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耳蜗中的脉冲980纳米短波红外神经刺激及激光参数对听觉反应特性的影响

Pulsed 980 nm short wavelength infrared neural stimulation in cochlea and laser parameter effects on auditory response characteristics.

作者信息

Wang Jingxuan, Lu Jianren, Li Chen, Xu Lei, Li Xiaofei, Tian Lan

机构信息

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

Shandong Artificial Auditory Engineering Centre, 250022, Jinan, Shandong, China.

出版信息

Biomed Eng Online. 2015 Oct 7;14:89. doi: 10.1186/s12938-015-0084-7.

Abstract

BACKGROUND

Auditory neural stimulation with pulsed infrared radiation has been proposed as an alternative method to activate the auditory nerves in vivo. Infrared wavelengths from 1800-2150 nm with high water absorption were mainly selected in previous studies. However, few researchers have used the short-wavelength infrared (SWIR) for auditory nerve stimulation and limited pulse parameters variability has been investigated so far.

METHODS

In this paper, we pioneered to use the 980 nm SWIR laser with adjustable pulse parameter as a stimulus to act on the deafened guinea pigs' cochlea in vivo. Pulsed laser light was guided through the cochlear round window to irradiate the spiral ganglion cells via a 105 μm optical fiber, and then the laser pulse parameters variability and its influence to auditory response characteristics were studied.

RESULTS

The results showed that the optically evoked auditory brainstem response (OABR) had a similar waveform to the acoustically induced ABR with click sound stimulus. And the evoked OABR amplitude had a positive correlation, while the OABR latency period showed a negative correlation, with the laser pulse energy increase. However, when holding the laser peak power constant, the pulse width variability ranged from 100 to 800 μs showed little influence on the evoked OABR amplitude and its latency period.

CONCLUSIONS

Our study suggests that 980 nm SWIR laser is an effective stimulus for auditory neurons activation in vivo. The evoked OABR amplitude and latency are highly affected by the laser pulse energy, while not sensitive to the pulse width variability in 100-800 μs range.

摘要

背景

脉冲红外辐射的听觉神经刺激已被提议作为一种在体内激活听觉神经的替代方法。先前的研究主要选择了具有高吸水性的1800 - 2150纳米红外波长。然而,很少有研究人员使用短波长红外(SWIR)进行听觉神经刺激,并且到目前为止,对有限的脉冲参数变异性进行了研究。

方法

在本文中,我们率先使用具有可调脉冲参数的980纳米SWIR激光作为刺激,作用于体内致聋豚鼠的耳蜗。脉冲激光通过耳蜗圆窗,经105微米光纤照射螺旋神经节细胞,然后研究激光脉冲参数变异性及其对听觉反应特性的影响。

结果

结果表明,光诱发听觉脑干反应(OABR)与点击声刺激诱发的声诱发ABR具有相似的波形。随着激光脉冲能量增加,诱发的OABR振幅呈正相关,而OABR潜伏期呈负相关。然而,当保持激光峰值功率恒定时,100至800微秒范围内的脉冲宽度变异性对诱发的OABR振幅及其潜伏期影响很小。

结论

我们的研究表明,980纳米SWIR激光是一种在体内激活听觉神经元的有效刺激。诱发的OABR振幅和潜伏期受激光脉冲能量的高度影响,而对100 - 800微秒范围内的脉冲宽度变异性不敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ee6/4597400/9af7ab27851f/12938_2015_84_Fig1_HTML.jpg

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