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首页> 外文期刊>Acoustical physics >Masking of short stimuli by noises with spiked spectra: I. Compressive nonlinearity of cochlea and evaluation of frequency resolution
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Masking of short stimuli by noises with spiked spectra: I. Compressive nonlinearity of cochlea and evaluation of frequency resolution

机译:带有尖峰频谱的噪声掩盖短刺激:I.耳蜗的压缩非线性和频率分辨率评估

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A psychoacoustic method for measuring masking thresholds based on the application of single-type stimuli and maskers intended for revealing compressive nonlinearity of displacements of the cochlea basila membrane and evaluation of the frequency resolution of hearing in a narrow frequency range near the central frequency of the stimulus is considered. High-frequency pulses with an envelope in the form of a Gaussian function with a sinusoidal filling with the frequency band corresponding to the width of the critical hearing band have been used as stimuli (referred to as compact). Noises with a spike structure of the amplitude spectrum with a limited frequency band width served as maskers. With the central frequencies of stimuli and maskers being equal, a band noise with the central frequency corresponding with a spike of an indented spectrum was called an on_((rip))-frequency masker, while that with the central frequency corresponding to a dip in an indented spectrum was called an off_((rip))-frequency masker. The central frequencies and frequency bands of the stimuli and maskers were 4 kHz and 1000 Hz, respectively. The spike (dip) frequencies of an indented amplitude spectrum of a masker were 1000 Hz. In the case of successive and simultaneous masking, the dependences of the thresholds of off_((rip))-frequency masking of compact stimuli on the masker level revealed compressive nonlinearity of basila membrane displacements. However, threshold on_((rip))/off_((rip))-frequency masking differences visualized it much better. The estimates of the frequency resolution obtained under conditions of simultaneous masking of compact stimuli during variations in the frequency of spikes of indented masker spectra of low and medium levels corresponded to the width of the critical hearing band measured using a classical method of tone masking by a pair of narrow-band noise maskers. Within the spike frequency range of 500-2000 Hz, the steepness of the dependence of off_((rip))-masking of compact stimuli on the spike frequency decreased with an increase in masker levels that pointed to an effect of compressive properties of basila membrane displacements on this parameter.
机译:一种基于单一刺激和掩蔽剂的掩蔽阈值测量方法的心理声学方法,旨在揭示耳蜗基底膜位移的压缩非线性并评估在刺激中心频率附近的狭窄频率范围内听力的频率分辨率被认为。具有高斯函数形式的包络的高频脉冲具有正弦曲线填充,该正弦填充的频带对应于临界听力带的宽度,已被用作刺激(称为紧凑型)。具有有限频带宽度的幅度频谱的尖峰结构的噪声用作掩蔽器。在刺激和掩蔽器的中心频率相等的情况下,将具有与凹进频谱的尖峰相对应的中心频率的带噪声称为on _((rip))-频率掩蔽器,而将中心频率与下陷频率相对应的带噪声称为on _((rip))-频率掩蔽器。缩进的频谱称为off _((rip))-频率掩蔽器。刺激和掩蔽器的中心频率和频带分别为4 kHz和1000 Hz。掩蔽器的缩进振幅频谱的尖峰(dip)频率为1000 Hz。在连续和同时掩蔽的情况下,紧凑刺激的off-((rip))-频率掩蔽的阈值对掩蔽器水平的依赖性揭示了基底膜位移的压缩非线性。但是,阈值on _((rip))/ off _((rip))-频率掩蔽差异使它的可视化效果更好。在低和中等水平的压入式掩蔽谱的尖峰频率变化期间同时掩蔽紧缩刺激的条件下获得的频率分辨率的估计值对应于使用经典的音调掩蔽方法通过一对窄带噪声掩蔽器。在500-2000 Hz的尖峰频率范围内,紧凑型刺激的off _((rip))-掩蔽对尖峰频率的依赖性的陡度随着掩蔽剂水平的增加而降低,这表明基底膜的压缩特性会产生影响此参数的位移。

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