感觉皮层的适应驱动听觉流分离过程中的双稳态转换。

IF 3.1 Q1 PSYCHOLOGY, BIOLOGICAL
Neuroscience of Consciousness Pub Date : 2023-02-04 eCollection Date: 2023-01-01 DOI:10.1093/nc/niac019
Nathan C Higgins, Alexandra N Scurry, Fang Jiang, David F Little, Claude Alain, Mounya Elhilali, Joel S Snyder
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引用次数: 2

摘要

当前的感知理论强调神经适应、抑制性竞争和噪声是导致感知转换的关键因素。支持的证据来自于神经生理学的发现,在模式特异性和模态上脑区域的特定神经特征似乎对感知转换至关重要。我们使用功能性磁共振成像来研究当参与者听双稳态听觉流分离刺激时感知开关前后的大脑活动,双稳态听觉流分离刺激可以被听到为一个完整的音调流或两个分离的音调流。与稳定的整合感知相比,听觉丘脑在从分离到整合的转换期间表现出更多的活动;相比之下,与分离流稳定感知的时间段相比,从整合流切换到分离流时,吻侧前扣带皮层和下顶叶显示出更多的活动,这与先前关于大脑活动不对称取决于切换方向的发现一致。在听觉皮层的声音反应区,神经活动在感知转换前强度增加,在感知转换后强度随时间下降。听觉皮层的这种动态与视觉和听觉双稳态转换的计算模型提出的适应作用是一致的,即在感知转换后,神经活动的强度会降低,最终使当前感知不稳定,足以导致切换到另一个感知。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Adaptation in the sensory cortex drives bistable switching during auditory stream segregation.

Adaptation in the sensory cortex drives bistable switching during auditory stream segregation.

Adaptation in the sensory cortex drives bistable switching during auditory stream segregation.

Adaptation in the sensory cortex drives bistable switching during auditory stream segregation.

Current theories of perception emphasize the role of neural adaptation, inhibitory competition, and noise as key components that lead to switches in perception. Supporting evidence comes from neurophysiological findings of specific neural signatures in modality-specific and supramodal brain areas that appear to be critical to switches in perception. We used functional magnetic resonance imaging to study brain activity around the time of switches in perception while participants listened to a bistable auditory stream segregation stimulus, which can be heard as one integrated stream of tones or two segregated streams of tones. The auditory thalamus showed more activity around the time of a switch from segregated to integrated compared to time periods of stable perception of integrated; in contrast, the rostral anterior cingulate cortex and the inferior parietal lobule showed more activity around the time of a switch from integrated to segregated compared to time periods of stable perception of segregated streams, consistent with prior findings of asymmetries in brain activity depending on the switch direction. In sound-responsive areas in the auditory cortex, neural activity increased in strength preceding switches in perception and declined in strength over time following switches in perception. Such dynamics in the auditory cortex are consistent with the role of adaptation proposed by computational models of visual and auditory bistable switching, whereby the strength of neural activity decreases following a switch in perception, which eventually destabilizes the current percept enough to lead to a switch to an alternative percept.

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来源期刊
Neuroscience of Consciousness
Neuroscience of Consciousness Psychology-Clinical Psychology
CiteScore
6.90
自引率
2.40%
发文量
16
审稿时长
19 weeks
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