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首页> 外文期刊>Hearing Research: An International Journal >Combination of binaural and harmonic masking release effects in the detection of a single component in complex tones
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Combination of binaural and harmonic masking release effects in the detection of a single component in complex tones

机译:双耳和谐波掩蔽释放效果的组合在复杂音调中检测单个组分的检测

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摘要

Both harmonic and binaural signal properties are relevant for auditory processing. To investigate how these cues combine in the auditory system, detection thresholds for an 800-Hz tone masked by a diotic (i.e., identical between the ears) harmonic complex tone were measured in six normal-hearing subjects. The target tone was presented either diotically or with an interaural phase difference (IPD) of 1800 and in either harmonic or "mistuned" relationship to the diotic masker. Three different maskers were used, a resolved and an unresolved complex tone (fundamental frequency: 160 and 40 Hz) with four components below and above the target frequency and a broadband unresolved complex tone with 12 additional components. The target IPD provided release from masking in most masker conditions, whereas mistuning led to a significant release from masking only in the diotic conditions with the resolved and the narrowband unresolved maskers. A significant effect of mistuning was neither found in the diotic condition with the wideband unresolved masker nor in any of the dichotic conditions. An auditory model with a single analysis frequency band and different binaural processing schemes was employed to predict the data of the unresolved masker conditions. Sensitivity to modulation cues was achieved by including an auditory-motivated modulation filter in the processing pathway. The predictions of the diotic data were in line with the experimental results and literature data in the narrowband condition, but not in the broadband condition, suggesting that across-frequency processing is involved in processing modulation information. The experimental and model results in the dichotic conditions show that the binaural processor cannot exploit modulation information in binaurally unmasked conditions. (C) 2017 Elsevier B.V. All rights reserved.
机译:谐波和双耳信号性质都与听觉处理相关。为了研究这些提示如何在听觉系统中结合,在六个正常听觉对象中测量由模电(即,耳朵之间的耳朵之间的相同)掩蔽的800Hz音调的检测阈值。目标音调是基因上或具有1800的内部相位差(IPD),并且在谐波或“雾化”关系与DIOCIC掩蔽器中。使用了三个不同的掩蔽剂,解决了和未解决的复杂音调(基本频率:160和40 Hz),其四个组件低于目标频率,宽带未解决的复杂音调,具有12个附加组件。目标IPD在大多数掩蔽条件下提供从掩模的掩模释放,而迷雾导致仅在具有解析和窄带未解决的掩蔽器中掩蔽的显着释放。迷雾的显着效果既没有发现在与宽带未解析的掩蔽器中也不存在的DIOCTIC病症,也不是在任何一种Dichotic条件下。采用具有单个分析频带和不同双耳处理方案的听觉模型来预测未解决的掩蔽条件的数据。通过在处理途径中包括听觉激励的调制滤波器来实现对调制线索的敏感性。模型数据的预测符合窄带条件中的实验结果和文献数据,但不在宽带条件下,建议跨频率处理参与处理调制信息。实验和模型导致Dichotic条件表明,双耳处理器无法利用BinaAraphly揭露条件中的调制信息。 (c)2017 Elsevier B.v.保留所有权利。

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