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Level dependence of the nonlinear-distortion component of distortion-product otoacoustic emissions in humans

机译:人类失真产物耳声发射的非线性失真分量的水平依赖性

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Distortion-product otoacoustic emissions (DPOAEs) emerge when presenting two primary tones with different frequencies f(1) and f(2) to the cochlea and are commonly used in diagnosis and research to evaluate the functional state of the cochlea. Optimal primary-tone stimulus levels accounting for the different level dependencies of the traveling-wave amplitudes of the two primary tones near the f(2)-tonotopic place on the basilar membrane are often used to maximize DPOAE amplitudes. However, parameters defining the optimal levels can be affected by wave interference between the nonlinear-distortion and coherent-reflection components of the DPOAE. Here, the components were separated in the time domain using a pulsed stimulus paradigm and optimal levels determined. Based on the amplitude dependence of the nonlinear-distortion components on primary-tone stimulus levels, level parameters yielding maximum DPOAE amplitudes were derived for six normalhearing adults and compared to data recorded with continuous two-tone stimulation. The level parameters resulting from analysis of the nonlinear-distortion components show dependence on stimulus frequency and small standard deviations. DPOAE input/output functions derived for optimal levels exhibit larger slopes, wider dynamic range and less variability across subjects than those derived for conventional stimulus and analysis conditions, potentially increasing their reliability and sensitivity for assessing cochlea function. (C) 2015 Author(s).
机译:失真产物耳声发射(DPOAE)在向耳蜗呈现两个不同频率f(1)和f(2)的主音时出现,并且通常用于诊断和研究以评估耳蜗的功能状态。最优主音刺激水平考虑了基底膜上f(2)-音位附近的两个主音的行波幅度的不同水平依赖性,通常被用来最大化DPOAE幅度。但是,定义最佳电平的参数可能会受到DPOAE的非线性失真和相干反射分量之间的波干扰的影响。在这里,使用脉冲刺激范例在时域中分离成分,并确定最佳水平。基于非线性失真分量对主音调刺激水平的幅度依赖性,推导了六名正常听觉成年人产生最大DPOAE幅度的水平参数,并将其与连续两声调刺激记录的数据进行了比较。通过分析非线性失真分量得出的电平参数显示出对激励频率的依赖以及较小的标准偏差。与为常规刺激和分析条件而获得的DPOAE输入/输出函数相比,为最佳水平得出的DPOAE输入/输出函数具有更大的斜率,更宽的动态范围和更少的变异性,从而有可能提高其评估耳蜗功能的可靠性和敏感性。 (C)2015年作者。

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