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内毛细胞和基底膜反应中的互调失真(F2 - F1)

Intermodulation distortion (F2-F1) in inner hair cell and basilar membrane responses.

作者信息

Nuttall A L, Dolan D F

机构信息

University of Michigan Medical School, Kresge Hearing Research Institute, Ann Arbor 48109-0506.

出版信息

J Acoust Soc Am. 1993 Apr;93(4 Pt 1):2061-8. doi: 10.1121/1.406692.

Abstract

Round window (RW) recordings in guinea pigs show a large response at the frequency of the quadratic difference tone (QDT) at F2-F1 for high-frequency (> 8 kHz) tone pairs. The magnitude of the RW response is dependent on frequency and level of the primaries. The QDT cochlear microphonic produced is largest for primaries with a frequency separation of approximately 900 Hz. Its source is probably the local activity of hair cells in basal cochlear locations where the high-frequency tones interact. QDT measurements from locations inside the organ of Corti show that the magnitude of the QDT is largest in the inner hair cell (IHC) region and monotonically increases as the difference in the frequency of the primaries decreases. Measured as IHC intracellular ac receptor potential, the QDT appears to be the result of a mechanical stimulus to the cell rather than as an inherent property of the nonlinear transduction in the IHC. However, QDT of the same form is not evident in the velocity responses of the basilar membrane. These results suggest that the outer hair cells (OHC) produce a strong quadratic distortion product mechanical force to stimulate inner hair cells. This mechanical drive may not be present, or is a weak component, in basilar membrane motion.

摘要

豚鼠圆窗(RW)记录显示,对于高频(>8kHz)音调对,在F2 - F1的二次差频(QDT)频率处有较大反应。RW反应的幅度取决于基频的频率和强度。产生的QDT耳蜗微音电位对于频率间隔约为900Hz的基频最大。其来源可能是高频音调相互作用的耳蜗基部位置毛细胞的局部活动。来自柯蒂氏器内部位置的QDT测量表明,QDT的幅度在inner hair cell(IHC)区域最大,并随着基频频率差异的减小而单调增加。以IHC细胞内交流受体电位测量,QDT似乎是对细胞的机械刺激的结果,而不是IHC中非线性转导的固有特性。然而,在基底膜的速度反应中,相同形式的QDT并不明显。这些结果表明,外毛细胞(OHC)产生强烈的二次畸变产物机械力来刺激内毛细胞。这种机械驱动在基底膜运动中可能不存在,或者是一个较弱的成分。

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