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Effects of Low- and High-Frequency Side Bands of Notched Noise on Masking and Auditory Filter Shape at Very High Frequencies

机译:低频高频陷波噪声对高频下掩蔽和听觉滤波器形状的影响

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This paper is concerned with the determination of the auditory filter shape using the notched noise method with noise bands symmetrically located above and below a probe frequency of 10 kHz. Unlike in the classical experiments conducted with the use of Patterson method the levels as well as power spectrum densities of the lower and upper component bands of the notched noise masker were not the same and were set such as to produce the same amount of masking at the 10-kHz frequency. The experiment consisted of three conditions in which the following values were determined: (I) the detection threshold for a 10-kHz probe tone in the presence of a noise masker presented below the tone's frequency; (II) the level of a noise masker presented above the 10-kHz probe tone frequency, at which the masker just masked the probe tone, (III) the detection threshold for a probe tone in the presence of a notched-noise masker. The data show a considerable amount of variability across the subjects, however, the resulting frequency characteristics of the auditory filters are consistent with those presented in the literature so that the Equivalent Rectangular Bandwidth is less than 11% of their centre frequency.
机译:本文涉及使用陷波噪声方法确定听觉滤波器的形状,其中噪声频带对称地位于10 kHz的探头频率之上和之下。与使用Patterson方法进行的经典实验不同,陷波噪声掩蔽器的上下成分带的电平和功率谱密度不相同,并且设置为在相同的频率下产生相同量的掩蔽。 10 kHz频率。实验由三个条件组成,其中确定以下值:(I)在音调频率以下出现噪声掩蔽的情况下,10 kHz探测音的检测阈值; (II)高于10 kHz探头音调频率的噪声掩蔽器的电平,在该频率下,该掩蔽器仅掩盖了探头音调;(III)在存在有缺口噪声掩蔽器的情况下,探头音调的检测阈值。数据显示受试者之间存在相当大的可变性,但是,听觉滤波器的最终频率特性与文献中给出的一致,因此等效矩形带宽小于其中心频率的11%。

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