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复合音与噪声之间掩蔽的不对称性:时间结构和外周压缩的作用。

Asymmetry of masking between complex tones and noise: the role of temporal structure and peripheral compression.

作者信息

Gockel Hedwig, Moore Brian C J, Patterson Roy D

机构信息

Department of Physiology, University of Cambridge, England.

出版信息

J Acoust Soc Am. 2002 Jun;111(6):2759-70. doi: 10.1121/1.1480422.

Abstract

Thresholds for the detection of harmonic complex tones in noise were measured as a function of masker level. The rms level of the masker ranged from 40 to 70 dB SPL in 10-dB steps. The tones had a fundamental frequency (F0) of 62.5 or 250 Hz, and components were added in either cosine or random phase. The complex tones and the noise were bandpass filtered into the same frequency region, from the tenth harmonic up to 5 kHz. In a different condition, the roles of masker and signal were reversed, keeping all other parameters the same; subjects had to detect the noise in the presence of a harmonic tone masker. In both conditions, the masker was either gated synchronously with the 700-ms signal, or it started 400 ms before and stopped 200 ms after the signal. The results showed a large asymmetry in the effectiveness of masking between the tones and noise. Even though signal and masker had the same bandwidth, the noise was a more effective masker than the complex tone. The degree of asymmetry depended on F0, component phase, and the level of the masker. The maximum difference between masked thresholds for tone and noise was about 28 dB; this occurred when the F0 was 62.5 Hz, the components were in cosine phase, and the masker level was 70 dB SPL. In most conditions, the growth-of-masking functions had slopes close to 1 (on a dB versus dB scale). However, for the cosine-phase tone masker with an F0 of 62.5 Hz, a 10-dB increase in masker level led to an increase in masked threshold of the noise of only 3.7 dB, on average. We suggest that the results for this condition are strongly affected by the active mechanism in the cochlea.

摘要

测量了噪声中谐波复合音的检测阈值与掩蔽声级的函数关系。掩蔽声的均方根声级以10 dB为步长,范围从40到70 dB SPL。这些音调的基频(F0)为62.5或250 Hz,分量以余弦或随机相位相加。复合音和噪声被带通滤波到相同的频率区域,从第十谐波到5 kHz。在另一种情况下,掩蔽声和信号的角色互换,其他所有参数保持不变;受试者必须在谐波音调掩蔽声存在的情况下检测噪声。在这两种情况下,掩蔽声要么与700毫秒的信号同步门控,要么在信号之前400毫秒开始并在信号之后200毫秒停止。结果表明,音调与噪声之间的掩蔽效果存在很大的不对称性。尽管信号和掩蔽声具有相同的带宽,但噪声是比复合音更有效的掩蔽声。不对称程度取决于F0、分量相位和掩蔽声级。音调与噪声的掩蔽阈值之间的最大差异约为28 dB;这发生在F0为62.5 Hz、分量为余弦相位且掩蔽声级为70 dB SPL时。在大多数情况下,掩蔽增长函数的斜率接近1(以dB对dB为尺度)。然而,对于F0为62.5 Hz的余弦相位音调掩蔽声,掩蔽声级每增加10 dB,噪声的掩蔽阈值平均仅增加3.7 dB。我们认为,这种情况下的结果受到耳蜗中主动机制的强烈影响。

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