首页> 美国卫生研究院文献>The Journal of Neuroscience >Laminar Distribution of Neurons in Extrastriate Areas Projecting to Visual Areas V1 and V4 Correlates with the Hierarchical Rank and Indicates the Operation of a Distance Rule
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Laminar Distribution of Neurons in Extrastriate Areas Projecting to Visual Areas V1 and V4 Correlates with the Hierarchical Rank and Indicates the Operation of a Distance Rule

机译:投影到视觉区域V1和V4的超视域神经元的层状分布与等级等级相关并指示距离规则的操作

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摘要

The directionality of corticocortical projections is classified as feedforward (going from a lower to higher hierarchical levels), feedback (interconnecting descending levels), and lateral (interconnecting equivalent levels). Directionality is determined by the combined criteria of the laminar patterns of the axon terminals as well as the cells of origins and has been used to construct models of the visual system, which reveals a strict hierarchical organization (; ). However, these models are indeterminate partly because we have no indication of the distance separating adjacent levels. Here we have attempted to determine a graded parameter describing the anatomical relationship of interconnected areas. We have investigated whether the precise percentage of labeled supragranular layer neurons (SLN%) in each afferent area after injection in either visual areas V1 or V4 determines its hierarchical position in the model. This shows that pathway directionality in the Felleman and Van Essen model is characterized by a range of SLN% values. The one exception is the projection of the frontal eye field to area V4, which resembles a feedforward projection. Individual areal differences in SLN% values are highly significant, and the number of hierarchical steps separating a target area from a source area is found to be tightly correlated to SLN%. The present results show that the hierarchical rank of each afferent area is reliably indicated by SLN%, and therefore this constitutes a graded parameter that is related to hierarchical distance.
机译:皮层皮质投影的方向性分为前馈(从较低的层次到较高的层次),反馈(相互连接的下降层次)和横向(相互连接的等效层次)。方向性由轴突末端的层状图案以及起源细胞的组合标准确定,并已用于构建视觉系统模型,从而揭示了严格的层次结构(;)。但是,这些模型是不确定的,部分原因是我们没有迹象表明将相邻层分开的距离。在这里,我们尝试确定描述互连区域的解剖关系的渐变参数。我们调查了在视觉区域V1或V4中注射后每个传入区域中标记的颗粒上神经层神经元(SLN%)的精确百分比是否确定了其在模型中的分层位置。这表明Felleman和Van Essen模型中的路径方向性以一系列SLN%值为特征。一个例外是前眼视野到区域V4的投影,类似于前馈投影。 SLN%值的各个​​区域差异非常显着,并且发现将目标区域与源区域分开的分层步骤数与SLN%紧密相关。目前的结果表明,每个传入区域的等级等级由SLN%可靠地指示,因此,这构成了与等级距离相关的等级参数。

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