Center for Integrative and Cognitive Neuroscience, Vanderbilt Vision Research Center, Department of Psychology, Vanderbilt University Nashville, TN, USA.
Front Neuroanat. 2009 May 22;3:2. doi: 10.3389/neuro.05.002.2009. eCollection 2009.
The frontal eye field (FEF) contributes to directing visual attention and saccadic eye movement through intrinsic processing, interactions with extrastriate visual cortical areas (e.g., V4), and projections to subcortical structures (e.g., superior colliculus, SC). Several models have been proposed to describe the relationship between the allocation of visual attention and the production of saccades. We obtained anatomical information that might provide useful constraints on these models by evaluating two characteristics of FEF. First, we investigated the laminar distribution of efferent connections from FEF to visual areas V4 + TEO and to SC. Second, we examined the laminar distribution of different populations of GABAergic neurons in FEF. We found that the neurons in FEF that project to V4 + TEO are located predominantly in the supragranular layers, colocalized with the highest density of calbindin- and calretinin-immunoreactive inhibitory interneurons. In contrast, the cell bodies of neurons that project to SC are found only in layer 5 of FEF, colocalized primarily with parvalbumin inhibitory interneurons. None of the neurons in layer 5 that project to V4 + TEO also project to SC. These results provide useful constraints for cognitive models of visual attention and saccade production by indicating that different populations of neurons project to extrastriate visual cortical areas and to SC. This finding also suggests that FEF neurons projecting to visual cortex and SC are embedded in different patterns of intracortical circuitry.
额眼区(FEF)通过内在处理、与外纹状视觉皮层区域(如 V4)的相互作用以及向皮质下结构(如上丘,SC)的投射,有助于引导视觉注意力和眼跳运动。已经提出了几种模型来描述视觉注意力的分配与眼跳产生之间的关系。我们通过评估 FEF 的两个特征获得了可能对这些模型提供有用约束的解剖学信息。首先,我们研究了 FEF 到 V4+TEO 和 SC 的传出连接的分层分布。其次,我们检查了 FEF 中不同 GABA 能神经元群体的分层分布。我们发现,投射到 V4+TEO 的 FEF 神经元主要位于颗粒上层,与钙结合蛋白和钙调蛋白免疫反应性抑制性中间神经元的最高密度共定位。相比之下,投射到 SC 的神经元的胞体仅存在于 FEF 的第 5 层,主要与副甲状腺素抑制性中间神经元共定位。投射到 V4+TEO 的第 5 层中没有神经元也投射到 SC。这些结果通过表明不同群体的神经元投射到外纹状视觉皮层区域和 SC,为视觉注意力和眼跳产生的认知模型提供了有用的限制。这一发现还表明,投射到视觉皮层和 SC 的 FEF 神经元嵌入在不同的皮质内电路模式中。