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首页> 外文期刊>The Journal of the Acoustical Society of America >Distortion product otoacoustic emission input/output functions in normal-hearing and hearing-impaired human ears
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Distortion product otoacoustic emission input/output functions in normal-hearing and hearing-impaired human ears

机译:正常听觉和听力受损的人耳中的失真产物耳声发射输入/输出功能

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摘要

DPOAE input/output (I/O) functions were measured at 7 f_2 frequencies (1 to 8 kHz; f_2/f_1 = 1.22) over a range of levels (-5 to 95 dB SPL) in normal-hearing and hearing-impaired human ears. L_1-L_2 was level dependent in order to produce the largest 2 f_1-f_2 responses in normal ears. System distortion was determined by collecting DP data in six different acoustic cavities. These data were used to derive a multiple linear regression model to predict system distortion levels. The model was tested on cochlear-implant users and used to estimate system distortion in all other ears. At most but not all f_2's, measurements in cochlear implant ears were consistent with model predictions. At all f_2 frequencies, the ears with normal auditory thresholds produced I/O functions characterized by compressive nonlinear regions at moderate levels, with more rapid growth at low and high stimulus levels. As auditory threshold increased, DPOAE threshold increased, accompanied by DPOAE amplitude reductions, notably over the range of levels where normal ears showed compression. The slope of the I/O function was steeper in impaired ears. The data from normal-hearing ears resembled direct measurements of basilar membrane displacement in lower animals. Data from ears with hearing loss showed that the compressive region was affected by cochlear damage; however, responses at high levels of stimulation resembled those observed in normal ears.
机译:在正常听觉和听力障碍的人中,在一系列水平(-5至95 dB SPL)下,以7 f_2频率(1至8 kHz; f_2 / f_1 = 1.22)测量了DPOAE输入/输出(I / O)功能耳朵。 L_1-L_2与水平相关,以便在正常耳朵中产生最大的2个f_1-f_2响应。通过在六个不同的声腔中收集DP数据来确定系统失真。这些数据被用来推导多元线性回归模型以预测系统失真水平。该模型在人工耳蜗用户上进行了测试,并用于估计所有其他耳朵的系统失真。最多但不是全部f_2,耳蜗植入物耳朵的测量结果与模型预测一致。在所有f_2频率下,具有正常听觉阈值的耳朵会产生I / O功能,其特征在于中等水平的压缩非线性区域,在低和高刺激水平下都有更快的增长。随着听觉阈值的增加,DPOAE阈值增加,同时DPOAE幅度降低,特别是在正常耳朵显示受压的水平范围内。在受损的耳朵中,I / O功能的斜率更大。来自正常听觉耳朵的数据类似于直接测量下部动物的基底膜位移。听力损失的耳朵的数据显示,受压区域受到耳蜗损害的影响;但是,在高刺激水平下的反应类似于在正常耳朵中观察到的反应。

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