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猴脑中的额眼区:来自前额叶和前运动皮质的对视觉引导的眼跳的贡献。

Frontal eye fields in macaque monkeys: prefrontal and premotor contributions to visually guided saccades.

机构信息

Department of Psychology, Vanderbilt University, Center for Integrative and Cognitive Neuroscience, Vanderbilt Vision Research Center.

出版信息

Cereb Cortex. 2022 Nov 9;32(22):5083-5107. doi: 10.1093/cercor/bhab533.

Abstract

Neuronal spiking was sampled from the frontal eye field (FEF) and from the rostral part of area 6 that reaches to the superior limb of the arcuate sulcus, dorsal to the arcuate spur when present (F2vr) in macaque monkeys performing memory-guided saccades and visually guided saccades for visual search. Neuronal spiking modulation in F2vr resembled that in FEF in many but not all respects. A new consensus clustering algorithm of neuronal modulation patterns revealed that F2vr and FEF contain a greater variety of modulation patterns than previously reported. The areas differ in the proportions of visuomotor neuron types, the proportions of neurons discriminating a target from distractors during visual search, and the consistency of modulation patterns across tasks. However, between F2vr and FEF we found no difference in the magnitude of delay period activity, the timing of the peak discharge rate relative to saccades, or the time of search target selection. The observed similarities and differences between the 2 cortical regions contribute to other work establishing the organization of eye fields in the frontal lobe and may help explain why FEF in monkeys is identified within granular prefrontal area 8 but in humans is identified within agranular premotor area 6.

摘要

在执行记忆引导扫视和视觉引导搜索扫视的猕猴中,从额眼区 (FEF) 和延伸至弓状沟上支上方、在存在弓状突时位于其背侧的第 6 区的前部 (F2vr) 采样神经元尖峰。F2vr 中的神经元尖峰调制在许多方面类似于 FEF,但并非所有方面都如此。神经元调制模式的一种新的共识聚类算法表明,F2vr 和 FEF 包含比以前报道的更多种类的调制模式。这些区域在运动神经元类型的比例、在视觉搜索过程中区分目标与干扰物的神经元的比例以及跨任务的调制模式的一致性方面存在差异。然而,在 F2vr 和 FEF 之间,我们没有发现延迟期活动幅度、与扫视相关的放电率峰值相对于扫视的时间或搜索目标选择的时间方面的差异。在这两个皮质区域之间观察到的相似性和差异性有助于其他工作确定额叶眼区的组织,并可能有助于解释为什么猴子的 FEF 在颗粒状前额叶 8 区中被识别,但在人类中在无颗粒前运动区 6 中被识别。

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