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Flexible Information Coding in Human Auditory Cortex during Perception, Imagery, and STM of Complex Sounds

机译:复杂声音的感知,图像和STM中人类听觉皮层的灵活信息编码

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摘要

Auditory cortex is the first cortical region of the human brain to process sounds. However, it has recently been shown that its neurons also fire in the absence of direct sensory input, during memory maintenance and imagery. This has commonly been taken to reflect neural coding of the same acoustic information as during the perception of sound. However, the results of the current study suggest that the type of information encoded in auditory cortex is highly flexible. During perception and memory maintenance, neural activity patterns are stimulus specific, reflecting individual sound properties. Auditory imagery of the same sounds evokes similar overall activity in auditory cortex as perception. However, during imagery abstracted, categorical information is encoded in the neural patterns, particularly when individuals are experiencing more vivid imagery. This highlights the necessity to move beyond traditional “brain mapping” inference in human neuroimaging, which assumes common regional activation implies similar mental representations.
机译:听觉皮层是人脑处理声音的第一个皮层区域。然而,最近显示,在记忆维持和成像过程中,在没有直接感觉输入的情况下,其神经元也会触发。通常认为这是为了反映与声音感知期间相同的声学信息的神经编码。然而,目前的研究结果表明,听觉皮层中编码的信息类型具有高度的灵活性。在感知和记忆维持过程中,神经活动模式是特定于刺激的,反映了个体的声音特性。相同声音的听觉影像在听觉皮层中引起与感知相似的整体活动。但是,在抽象图像期间,分类信息会以神经模式进行编码,尤其是当个人正在经历更生动的图像时。这突显了超越人类神经影像学中传统的“大脑映射”推论的必要性,后者假定共同的区域激活意味着相似的心理表征。

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