Khanna S M, Hao L F
Department of Otolaryngology and Head and Neck Surgery, College of Physicians and Surgeons of Columbia University, New York, NY 10032, USA.
Hear Res. 1999 Jun;132(1-2):15-33. doi: 10.1016/s0378-5955(99)00027-1.
The reticular lamina of the apical turn of a living guinea pig cochlea was viewed through the intact Reissner's membrane using a slit confocal microscope. Vibrations were measured at selected identified locations with a confocal heterodyne interferometer, in response to tones applied with an acoustic transducer coupled to the ear canal. The position coordinates of each location were recorded. Mechanical tuning curves were measured along a radial track at Hensen's cells, outer hair cells, inner hair cells and at the osseous spiral lamina, over a frequency range of 3 kHz, using five sound pressure levels (100, 90, 80, 70 and 60 dB SPL). The carrier to noise ratio obtained throughout the experiments was high. The response shape at any measuring location was not found to change appreciably with signal level. The response shape also did not change significantly with the radial position on the reticular lamina. However, the response magnitude increased progressively from the inner hair cell to the Hensen's cell. The observed linearity of response at the fundamental frequency is explained by the presence of negative feed back in the apical turn of the cochlea.
使用狭缝共聚焦显微镜,通过完整的Reissner膜观察活豚鼠耳蜗顶转的网状板。使用共焦外差干涉仪在选定的特定位置测量振动,以响应通过耦合到耳道的声学换能器施加的音调。记录每个位置的坐标。在3kHz的频率范围内,使用五个声压级(100、90、80、70和60dB SPL),沿着Hensen细胞、外毛细胞、内毛细胞和骨螺旋板处的径向轨迹测量机械调谐曲线。整个实验中获得的载噪比很高。未发现任何测量位置的响应形状随信号电平有明显变化。响应形状也不会随网状板上的径向位置而显著变化。然而,响应幅度从内毛细胞到Hensen细胞逐渐增加。耳蜗顶转中存在负反馈解释了在基频处观察到的响应线性。