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人类视觉皮层中受刺激调节的功能磁共振相关活动的结构。

Stimulus-Tuned Structure of Correlated fMRI Activity in Human Visual Cortex.

机构信息

Department of Brain and Cognitive Sciences, Seoul National University, Seoul 151-742, Republic of Korea.

出版信息

Cereb Cortex. 2018 Feb 1;28(2):693-712. doi: 10.1093/cercor/bhw411.

Abstract

Processing units are interconnected in the visual system, where a sensory organ and downstream cortical regions communicate through hierarchical connections, and local sites within the regions communicate through horizontal connections. In such networks, neural activities at local sites are likely to influence one another in complex ways and thus are intricately correlated. Recognizing the functional importance of correlated activity in sensory representation, spontaneous activities have been studied via diverse local or global measures in various time scales. Here, measuring functional magnetic resonance imaging (fMRI) signals in human early visual cortex, we explored systematic patterns that govern the correlated activities arising spontaneously. Specifically, guided by previously identified biases in anatomical connection patterns, we characterized all possible pairs of gray matter sites in 3 relational factors: "retinotopic distance," "cortical distance," and "stimulus tuning similarity." By evaluating and comparing the unique contributions of these factors to the correlated activity, we found that tuning similarity factors overrode distance factors in accounting for the structure of correlated fMRI activity both within and between V1, V2, and V3, irrespective of the presence or degree of visual stimulation. Our findings indicate that the early human visual cortex is intrinsically organized as a network tuned to the stimulus features.

摘要

处理单元在视觉系统中相互连接,其中感觉器官和下游皮质区域通过分层连接进行通信,而区域内的局部位点通过水平连接进行通信。在这样的网络中,局部位点的神经活动可能以复杂的方式相互影响,因此彼此之间存在复杂的相关性。鉴于相关活动在感觉表示中的功能重要性,已经通过各种时间尺度的各种局部或全局测量来研究自发活动。在这里,通过测量人类早期视觉皮层中的功能磁共振成像 (fMRI) 信号,我们探索了自发出现的相关活动所遵循的系统模式。具体而言,受先前在解剖连接模式中确定的偏差的指导,我们在 3 个关系因素中对所有可能的灰质位点对进行了特征描述:“视网膜距离”、“皮质距离”和“刺激调谐相似性”。通过评估和比较这些因素对相关活动的独特贡献,我们发现,在 V1、V2 和 V3 内和之间,调谐相似性因素在解释相关 fMRI 活动的结构方面,超过了距离因素,无论是否存在视觉刺激以及刺激的程度如何。我们的研究结果表明,早期人类视觉皮层作为一个网络,根据刺激特征进行了内在组织。

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