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用于定向注意力的扣带回-额叶-顶叶神经认知网络内的连接结构

Architecture of connectivity within a cingulo-fronto-parietal neurocognitive network for directed attention.

作者信息

Morecraft R J, Geula C, Mesulam M M

机构信息

Bullard Laboratory, Beth Israel Hospital, Boston, Mass.

出版信息

Arch Neurol. 1993 Mar;50(3):279-84. doi: 10.1001/archneur.1993.00540030045013.

DOI:10.1001/archneur.1993.00540030045013
PMID:8442707
Abstract

The spatial distribution of directed attention is coordinated by a large-scale neural network. The three principal cortical components of this network are located in the region of the frontal eye fields, posterior parietal cortex, and the cingulate cortex. We injected a retrogradely transported fluorescent dye into the frontal eye fields and another into the posterior parietal cortex of the monkey brain. Large numbers of neurons in the cingulate cortex were retrogradely labeled with each of the two fluorescent dyes. The two types of retrogradely labeled neurons were extensively intermingled, but neurons labeled with both tracers constituted less than 1% of retrogradely labeled cingulate neurons. Other cortical areas that contained retrograde neuronal labeling included the premotor, lateral neuronal labeling included the premotor, lateral prefrontal, orbitofrontal, opercular, posterior parietal, lateral temporal, inferior temporal, parahippocampal, and insular regions. These areas contained neurons labeled with each of the two dyes but virtually no neurons labeled with both. In the thalamus, retrogradely labeled nuclei failed to display evidence of double labeling. The overlap between the two populations of retrogradely labeled neurons was far more extensive at the cortical than at the thalamic level. These observations show that cortical and thalamic projections to the frontal eye fields and posterior parietal cortex do not represent axonal collaterals of single neurons but originate from two distinct and partially overlapping populations of neurons.

摘要

定向注意力的空间分布由一个大规模神经网络协调。该网络的三个主要皮质成分位于额叶眼区、顶叶后皮质和扣带皮质区域。我们将一种逆行运输的荧光染料注入猴脑的额叶眼区,另一种注入顶叶后皮质。扣带皮质中的大量神经元被两种荧光染料中的每一种逆行标记。这两种逆行标记的神经元广泛混合,但被两种示踪剂都标记的神经元占逆行标记的扣带神经元的比例不到1%。其他含有逆行神经元标记的皮质区域包括运动前区、外侧前额叶、眶额叶、岛盖、顶叶后、颞叶外侧、颞下、海马旁和岛叶区域。这些区域含有被两种染料中的每一种标记的神经元,但几乎没有被两种染料都标记的神经元。在丘脑中,逆行标记的核没有显示出双重标记的证据。在皮质水平上,这两种逆行标记的神经元群体之间的重叠比在丘脑水平上广泛得多。这些观察结果表明,投射到额叶眼区和顶叶后皮质的皮质和丘脑投射并非单个神经元的轴突侧支,而是起源于两个不同且部分重叠的神经元群体。

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