Spatial release from informational masking enhances the early cortical representation of speech sounds.

Benjamin H Zobel, Richard L Freyman, Lisa D Sanders
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Abstract

Introduction: Spatial separation between competing speech streams reduces their confusion (informational masking), improving speech processing under challenging listening conditions. The precise stages of auditory processing involved in this benefit are not fully understood. This study used event-related potentials to examine the processing of target speech under conditions of informational masking and its spatial release.

Methods: Participants detected noise-vocoded target speech presented with two-talker noise-vocoded masking speech. In separate conditions, the same set of targets were spatially co-located with maskers to produce informational masking and spatially separated from maskers using a perceptual manipulation to release the informational masking.

Results: An increase in N1 and P2 amplitude, consistent with cortical auditory evoked potentials, and a later sustained positivity (P300) were observed in response to target onsets only under conditions supporting release from informational masking. At target intensities above masking threshold in both spatial conditions, N1 and P2 latencies were shorter when targets and maskers were perceptually separated.

Discussion: These results indicate that spatial release from informational masking benefits speech representation beginning in the early stages of auditory perception. Additionally, these results suggest that the auditory evoked potential itself may be heavily dependent upon how information is perceptually organized rather than physically organized.

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信息掩蔽的空间释放增强了语音的早期皮层表征。
相互竞争的语音流之间的空间分离减少了它们的混淆(信息掩蔽),改善了在具有挑战性的听力条件下的语音处理。这种益处所涉及的听觉处理的确切阶段还没有完全了解。本研究利用事件相关电位研究了信息掩蔽及其空间释放条件下目标语音的加工过程。方法:被试用双说话者噪声编码的掩模语音检测噪声编码的目标语音。在不同条件下,同一组目标在空间上与掩蔽物共存以产生信息掩蔽,并在空间上通过知觉操作与掩蔽物分离以释放信息掩蔽。结果:N1和P2振幅的增加,与皮层听觉诱发电位一致,并且只有在支持信息掩膜释放的条件下,才能观察到对靶标发作的反应,随后持续的阳性(P300)。在两种空间条件下,当目标强度高于掩蔽阈值时,当目标和掩蔽物知觉分离时,N1和P2潜伏期均较短。讨论:这些结果表明,信息掩蔽的空间释放在听觉感知的早期阶段就开始有利于语音表征。此外,这些结果表明,听觉诱发电位本身可能在很大程度上取决于信息是如何感知组织的,而不是物理组织的。
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