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任务驱动的偏侧化过程中视觉处理的半球间整合

Interhemispheric integration of visual processing during task-driven lateralization.

作者信息

Stephan Klaas E, Marshall John C, Penny Will D, Friston Karl J, Fink Gereon R

机构信息

Wellcome Trust Centre for Neuroimaging, Institute of Neurology, University College London, London WC1N 3BG, United Kingdom.

出版信息

J Neurosci. 2007 Mar 28;27(13):3512-22. doi: 10.1523/JNEUROSCI.4766-06.2007.

Abstract

The mechanisms underlying interhemispheric integration (IHI) remain poorly understood, particularly for lateralized cognitive processes. To test competing theories of IHI, we constructed and fitted dynamic causal models to functional magnetic resonance data from two visual tasks that operated on identical stimuli but showed opposite hemispheric dominance. Using a systematic Bayesian model selection procedure, we found that, in the ventral visual stream, which was activated by letter judgments, interhemispheric connections mediated asymmetric information transfer from the nonspecialized right to the specialized left hemisphere when the latter did not have direct access to stimulus information. Notably, this form of IHI did not engage all areas activated by the task but was specific for areas in the lingual and fusiform gyri. In the dorsal stream, activated by spatial judgments, it did not matter which hemisphere received the stimulus: interhemispheric coupling increased bidirectionally, reflecting recruitment of the nonspecialized left hemisphere. Again, not all areas activated by the task were involved in this form of IHI; instead, it was restricted to interactions between areas in the superior parietal gyrus. Overall, our results provide direct neurophysiological evidence, in terms of effective connectivity, for the existence of context-dependent mechanisms of IHI that are implemented by specific visual areas during task-driven lateralization.

摘要

半球间整合(IHI)的潜在机制仍未得到充分理解,尤其是对于偏侧化认知过程而言。为了检验关于IHI的相互竞争的理论,我们构建并拟合了动态因果模型,以分析来自两项视觉任务的功能磁共振数据,这两项任务处理相同的刺激,但显示出相反的半球优势。使用系统的贝叶斯模型选择程序,我们发现,在由字母判断激活的腹侧视觉流中,当专门化的左半球无法直接获取刺激信息时,半球间连接介导了从非专门化的右半球到专门化的左半球的不对称信息传递。值得注意的是,这种形式的IHI并未涉及任务激活的所有区域,而是特定于舌回和梭状回中的区域。在由空间判断激活的背侧流中,哪个半球接收刺激并不重要:半球间耦合双向增加,反映了非专门化左半球的参与。同样,任务激活的所有区域并非都参与这种形式的IHI;相反,它仅限于顶上回区域之间的相互作用。总体而言,我们的结果从有效连接性方面提供了直接的神经生理学证据,证明存在任务驱动的偏侧化过程中由特定视觉区域实现的上下文依赖的IHI机制。

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