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内耳的纳秒激光脉冲刺激——一项波长研究。

Nanosecond laser pulse stimulation of the inner ear-a wavelength study.

作者信息

Schultz Michael, Baumhoff Peter, Maier Hannes, Teudt Ingo U, Krüger Alexander, Lenarz Thomas, Kral Andrej

机构信息

Institute of Audioneurotechnology (VIANNA) & Dept. of Experimental Otology, ENT-Clinics, Medical University Hannover, Feodor-Lynen-Straße 35, 30625 Hannover, Germany ; Laser Zentrum Hannover e.V., Hollerithallee 8, 30419 Hannover, Germany.

出版信息

Biomed Opt Express. 2012 Dec 1;3(12):3332-45. doi: 10.1364/BOE.3.003332. Epub 2012 Nov 28.

Abstract

Optical stimulation of the inner ear, the cochlea, is discussed as a possible alternative to conventional cochlear implants with the hypothetical improvement of dynamic range and frequency resolution. In this study nanosecond-pulsed optical stimulation of the hearing and non-hearing inner ear is investigated in vivo over a wide range of optical wavelengths and at different beam delivery locations. Seven anaesthetized guinea pigs were optically stimulated before and after neomycin induced destruction of hair cells. An optical parametric oscillator was tuned to different wavelengths (420 nm-2150 nm, ultraviolet to near-infrared) and delivered 3-5 ns long pulses with 6 µJ pulse energy via a multimode optical fiber located either extracochlearly in front of the intact round window membrane or intracochlearly within the scala tympani. Cochlear responses were measured using registration of compound action potentials (CAPs). With intact hair cells CAP similar to acoustic stimulation were measured at both locations, while the neomycin treated cochleae did not show any response in any case. The CAP amplitudes of the functional cochleae showed a positive correlation to the absorption coefficient of hemoglobin and also to moderate water absorption. A negative correlation of CAP amplitude with a water absorption coefficient greater than 5.5 cm(-1) indicates additional phenomena. We conclude that in our stimulation paradigm with ns-pulses the most dominant stimulation effect is of optoacoustic nature and relates to functional hair cells.

摘要

内耳(即耳蜗)的光刺激作为传统人工耳蜗的一种可能替代方案被加以讨论,有望改善动态范围和频率分辨率。在本研究中,我们在体内研究了纳秒脉冲光刺激对听力正常和听力丧失的内耳的影响,涵盖了广泛的光波长范围以及不同的光束传输位置。对七只麻醉后的豚鼠在新霉素诱导毛细胞破坏前后进行了光刺激。将光学参量振荡器调谐到不同波长(420纳米至2150纳米,从紫外线到近红外),并通过位于完整圆窗膜前方的耳蜗外或鼓阶内的多模光纤,以6微焦的脉冲能量传输3至5纳秒长的脉冲。使用复合动作电位(CAP)记录来测量耳蜗反应。在毛细胞完整时,在两个位置均测量到了与声刺激类似的CAP,而新霉素处理后的耳蜗在任何情况下均未显示出任何反应。功能性耳蜗的CAP幅度与血红蛋白的吸收系数以及适度的水吸收呈正相关。CAP幅度与大于5.5厘米⁻¹的水吸收系数呈负相关,这表明存在其他现象。我们得出结论,在我们的纳秒脉冲刺激模式中,最主要的刺激效应具有光声性质,并且与功能性毛细胞有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4973/3521308/dc2869030cf1/boe-3-12-3332-g001.jpg

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