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增强的感觉处理伴随着对真实世界声音变化的成功检测。

Enhanced sensory processing accompanies successful detection of change for real-world sounds.

机构信息

University of Nevada, Las Vegas, NV 89154, USA.

出版信息

Neuroimage. 2012 Aug 1;62(1):113-9. doi: 10.1016/j.neuroimage.2012.04.057. Epub 2012 May 4.

Abstract

Change deafness is the inability of listeners to detect changes occurring in their auditory environment. It is a matter of some debate whether change deafness occurs because of a failure of auditory-specific processes or a failure of more general semantic/verbal memory. To address this issue, we measured event-related potentials (ERPs) to pairs of scenes consisting of naturalistic auditory objects while listeners made a same/different judgment for scenes presented before and after an interruption. ERPs to the post-change scene revealed an enhanced early sensory response (N1) and an enhanced late positivity (P3) for detected changes. Change detection performance was better when there was a large acoustic spread among the objects within Scenes 1 and 2, suggesting that the deficits reflected by the ERP components during change deafness are related to successfully segregating the pre- and post-change objects. We also found that a separate sensory response (P2) reflects implicit, unconscious change detection. Overall, the results provide evidence that auditory-specific sensory processing is critical for both explicit and implicit change detection in natural auditory scenes.

摘要

变化聋是指听众无法检测到其听觉环境中发生的变化。变化聋是由于听觉特定过程的失败还是更一般的语义/言语记忆的失败引起的,这是一个有争议的问题。为了解决这个问题,我们测量了与包含自然听觉对象的场景对相关的事件相关电位(ERP),同时让听众对中断前后呈现的场景进行相同/不同的判断。对于后变化场景的 ERP 显示,对于检测到的变化,早期感觉反应(N1)和晚期正性(P3)增强。当场景 1 和 2 中的对象之间存在较大的声音传播时,变化检测性能更好,这表明 ERP 成分在变化聋期间反映的缺陷与成功分离前变化和后变化对象有关。我们还发现,单独的感觉反应(P2)反映了无意识的变化检测。总体而言,结果提供了证据,表明听觉特定的感觉处理对于自然听觉场景中的显式和隐式变化检测都是至关重要的。

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