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首页> 外文期刊>Hearing Research: An International Journal >Motile responses of cochlear outer hair cells stimulated with an alternating electrical field.
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Motile responses of cochlear outer hair cells stimulated with an alternating electrical field.

机译:交流电场刺激的耳蜗外毛细胞的运动反应。

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摘要

The goal of the present study was to evaluate and characterize the motile responses of guinea pig OHCs, stimulated at frequencies varying from 50 Hz to 4 kHz, using high-definition, high-speed video recording and fully automatic image analysis software. Cells stimulated in continuous, burst and sweeping modes with an external alternating electrical field showed robust fast and slow motility, which were dependent on frequency, mode and intensity of stimulation. In response to continuous stimulation, electromotile amplitude ranged from 0.3% to 3.2% of total cell length, whereas cell length usually decreased in amounts varying from 0.1% to 4.3%. Electromotile amplitude in OHCs stimulated with square wave's sweeps was near constant up to 200 Hz, progressively decreased between 200 Hz and 2 kHz, and then remained constant up to 4 kHz. In continuous and burst modes electromotility followed cycle-by-cycle the electrical stimulus, but it required 1-2 s to fully develop and reach maximal amplitude. Instead, slow cell length changes started about 0.6 s after the beginning and continuously developed up to 3 s after the end of electrical stimulation. Incubation of OHCs with 10 mM salicylate affected electromotility but not slow motility, whereas incubation with 3 mM gadolinium affected both. Thus, combination of external electrical stimulation, high-speed video recording and advanced image analysis software provides information about OHC motile responses at acoustic frequencies with an unprecedented detail, opening new areas of research in the field of OHC mechanics.
机译:本研究的目标是使用高清,高速视频记录和全自动图像分析软件,评估和表征豚鼠OHC在50 Hz至4 kHz频率下刺激的运动反应。用外部交变电场以连续,爆发和清扫模式刺激的细胞表现出强健的快,慢运动性,这取决于刺激的频率,模式和强度。响应连续刺激,电动势幅度范围为总细胞长度的0.3%至3.2%,而细胞长度通常以0.1%至4.3%的量减少。由方波扫描激发的OHC中的电动势幅度在高达200 Hz时接近恒定,在200 Hz和2 kHz之间逐渐降低,然后在高达4 kHz时保持恒定。在连续模式和爆发模式下,电动性是逐周期地跟随电刺激,但是它需要1-2 s的时间才能完全发展并达到最大振幅。相反,缓慢的细胞长度变化在开始后约0.6 s开始,并在电刺激结束后持续发展到3 s。将OHC与10 mM水杨酸盐温育会影响电动力,但不会减慢运动速度,而与3 mM g一起温育会影响电动力。因此,外部电刺激,高速视频记录和先进的图像分析软件的组合提供了有关声频下OHC运动响应的信息,具有空前的细节,从而打开了OHC力学领域的新研究领域。

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