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The Role of Efferent Reduction of Cochlear Compression in the Detection of Tones in Noise

机译:触摸耳蜗压缩在噪声中色调检测中的作用

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Stimulation of medial olivocochlear (MOC) efferent neurons reduces basilar membrane (BM) sensitivity and increases the slope of BM input-output (I/O) functions in animal models. Decreased compression of I/O functions associated with activation of MOC efferent neurons may assist in extending the neural response to the tone above that of noise, leading to an improvement in masked thresholds. To evaluate this hypothesis, the distortion-product otoacoustic emission (DPOAE) I/O function, a proxy measure of BM compression, was examined in conditions with presentation of contralateral noise. DPOAE I/O functions were measured at f2 frequencies of 1000 and 2000 Hz in 16 normal-hearing adults. In each subject, estimation of masked thresholds at 1000 and 2000 Hz was provided by a two-interval forced-choice procedure. There were statistically significant associations between DPOAE I/O function slopes and masked tone thresholds at both 1000 and 2000 Hz. At 1000 Hz, individuals with higher DPOAE I/O function slopes exhibited lower masked thresholds. Data at 2000 Hz indicated that individuals with higher masked thresholds exhibited higher DPOAE I/O function slopes. When measured with contralateral noise, DPOAE I/O function slopes were linked to masked thresholds at both frequencies examined in this study. Linearized DPOAE I/O functions presumably reflect linearized BM growth functions under conditions of MOC efferent activation, and this process may have extended the neural response to the signal tone so that it could be more easily heard in the presence of masking noise under certain conditions examined in this study.
机译:内侧olivochlear(MOC)迁移神经元的刺激可降低基底膜(BM)灵敏度,并增加动物模型中的BM输入输出(I / O)功能的斜率。降低与MoC迁移神经元的激活相关的I / O功能的压缩可以有助于将神经响应延伸到高于噪声的音调,导致屏蔽阈值的改善。为了评估该假设,在具有对侧噪声的情况下,在条件下检查失真 - 产品耳声发射(DPOAE)I / O功能,在条件下在条件下在条件下检查BM压缩的代理测量。在16个正常听力成年人中,在 F 2 频率为1000和2000 Hz的频率下测量DPOAE I / O功能。在每个受试者中,通过双间隔强制选择程序提供1000和2000Hz的屏蔽阈值的估计。 DPOAE I / O功能斜率与1000和2000Hz的屏蔽音调阈值之间存在统计学上的重要关联。在1000 Hz,具有较高DPOAE I / O功能斜率的个体表现出较低的掩蔽阈值。 2000 Hz的数据表明,具有较高掩蔽阈值的个体表现出更高的DPOAE I / O功能斜率。当用对侧噪声测量时,DPOAE I / O功能斜率与本研究中检查的两个频率的屏蔽阈值连接到屏蔽阈值。线性化DPOAE I / O功能可能会在MOC迁移激活的条件下反映线性化的BM生长功能,并且该过程可能已经将神经响应扩展到信号音调,以便在检查某些条件下在存在掩蔽噪声的情况下可以更容易地听到它在这个研究中。

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