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猴下颞叶皮层局部水平功能神经元间相互作用的组织。

Organization of local horizontal functional interactions between neurons in the inferior temporal cortex of macaque monkeys.

机构信息

Graduate School of Frontier Biosciences, Osaka University, Suita, Japan; and

Graduate School of Frontier Biosciences, Osaka University, Suita, Japan; and.

出版信息

J Neurophysiol. 2014 Jun 15;111(12):2589-602. doi: 10.1152/jn.00336.2013. Epub 2014 Mar 26.

Abstract

Detailed knowledge of neuronal circuitry is necessary for understanding the mechanisms underlying information processing in the brain. We investigated the organization of horizontal functional interactions in the inferior temporal cortex of macaque monkeys, which plays important roles in visual object recognition. Neuronal activity was recorded from the inferior temporal cortex using an array of eight tetrodes, with spatial separation between paired neurons up to 1.4 mm. We evaluated functional interactions on a time scale of milliseconds using cross-correlation analysis of neuronal activity of the paired neurons. Visual response properties of neurons were evaluated using responses to a set of 100 visual stimuli. Adjacent neuron pairs tended to show strong functional interactions compared with more distant neuron pairs, and neurons with similar stimulus preferences tended to show stronger functional interactions than neurons with different stimulus preferences. Thus horizontal functional interactions in the inferior temporal cortex appear to be organized according to both cortical distances and similarity in stimulus preference between neurons. Furthermore, the relationship between strength of functional interactions and similarity in stimulus preference observed in distant neuron pairs was more prominent than in adjacent pairs. The results suggest that functional circuitry is specifically organized, depending on the horizontal distances between neurons. Such specificity endows each circuit with unique functions.

摘要

详细了解神经元回路对于理解大脑中信息处理的机制是必要的。我们研究了猕猴下颞叶皮层中水平功能相互作用的组织,下颞叶皮层在视觉物体识别中起着重要作用。使用八个四极管的阵列在下颞叶皮层记录神经元活动,配对神经元之间的空间分离可达 1.4 毫米。我们使用配对神经元的神经元活动的互相关分析在毫秒时间尺度上评估功能相互作用。使用对一组 100 个视觉刺激的反应来评估神经元的视觉反应特性。与更远的神经元对相比,相邻神经元对往往表现出很强的功能相互作用,而具有相似刺激偏好的神经元往往比具有不同刺激偏好的神经元表现出更强的功能相互作用。因此,下颞叶皮层中的水平功能相互作用似乎是根据神经元之间的皮质距离和刺激偏好的相似性组织的。此外,在遥远的神经元对中观察到的功能相互作用强度与刺激偏好相似性之间的关系比在相邻神经元对中更为显著。结果表明,功能回路是根据神经元之间的水平距离专门组织的。这种特异性赋予每个回路独特的功能。

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