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与噪声和信号源角分离相关的掩蔽阈值变化。

Masked threshold changes associated with angular separation of noise and signal sources.

作者信息

Terhune J M, Turnbull S D

机构信息

Department of Biology, University of New Brunswick, Saint John, N.B., Canada.

出版信息

Scand Audiol. 1989;18(2):85-9. doi: 10.3109/01050398909070727.

Abstract

Threshold changes associated with separating a signal source and a masking white noise source from 0 degree to 90 degrees were determined for 0.5, 1 and 8 kHz pure tones and click trains. No changes occurred for the 0.5 and 1 kHz pure tones. Masked thresholds of 8 kHz pure tones and click trains decreased linearly by 9 and 13 dB respectively as angular separation was moved from 0 degree to 90 degrees. Changes in click train stimuli masked thresholds did not change significantly when the ear directed toward the masking source was occluded (11 dB drop at 90 degrees). The absence of changes at low frequencies and the similarity in magnitude of the changes in signals containing high frequency components with the responses to the monaural click trains, suggests that the threshold changes can be attributed to a head shadow effect. The casting of a sound shadow effectively lowers the noise level on the shielded side. These findings question the importance of cross-correlation techniques when detecting signals in noise.

摘要

针对0.5、1和8千赫兹的纯音及短声序列,测定了将信号源和掩蔽白噪声源从0度分离至90度时的阈值变化。0.5和1千赫兹的纯音未出现变化。随着角度分离从0度移至90度,8千赫兹纯音和短声序列的掩蔽阈值分别线性下降了9分贝和13分贝。当朝向掩蔽源的耳朵被堵住时,短声序列刺激的掩蔽阈值变化并不显著(90度时下降11分贝)。低频处无变化以及含高频成分信号变化幅度与单耳短声序列反应相似,这表明阈值变化可归因于头部阴影效应。声影的形成有效地降低了被屏蔽一侧的噪声水平。这些发现对在噪声中检测信号时互相关技术的重要性提出了质疑。

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