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原猴亚目婴猴的额叶眼区:皮层内微刺激和追踪研究。

Frontal eye field in prosimian galagos: Intracortical microstimulation and tracing studies.

作者信息

Stepniewska Iwona, Pouget Pierre, Kaas Jon H

机构信息

Department of Psychology, Vanderbilt University, Nashville, Tennessee.

出版信息

J Comp Neurol. 2018 Mar 1;526(4):626-652. doi: 10.1002/cne.24355. Epub 2017 Nov 26.

Abstract

The frontal eye field (FEF) in prosimian primates was identified as a small cortical region, above and anterior to the anterior frontal sulcus, from which saccadic eye movements were evoked with electrical stimulation. Tracer injections revealed FEF connections with cortical and subcortical structures participating in higher order visual processing. Ipsilateral cortical connections were the densest with adjoining parts of the dorsal premotor and prefrontal cortex (PFC). Label in a region corresponding to supplementary eye field (SEF) of other primates, suggests the existence of SEF in galagos. Other connections were with ventral premotor cortex (PMV), the caudal half of posterior parietal cortex, cingulate cortex, visual areas within the superior temporal sulcus, and inferotemporal cortex. Callosal connections were mostly with the region of the FEF of another hemisphere, SEF, PFC, and PMV. Most subcortical connections were ipsilateral, but some were bilateral. Dense bilateral connections were to caudate nuclei. Densest reciprocal ipsilateral connections were with the paralamellar portion of mediodorsal nucleus, intralaminar nuclei and magnocellular portion of ventral anterior nucleus. Other FEF connections were with the claustrum, reticular nucleus, zona incerta, lateral posterior and medial pulvinar nuclei, nucleus limitans, pretectal area, nucleus of Darkschewitsch, mesencephalic and pontine reticular formation and pontine nuclei. Surprisingly, the superior colliculus (SC) contained only sparse anterograde label. Although most FEF connections in galagos are similar to those in monkeys, the FEF-SC connections appear to be much less. This suggests that a major contribution of the FEF to visuomotor functions of SC emerged with the evolution of anthropoid primates.

摘要

原猴亚目灵长类动物的额叶眼区(FEF)被确定为额叶前沟上方和前方的一个小皮质区域,通过电刺激可诱发眼球的快速扫视运动。示踪剂注射显示FEF与参与高级视觉处理的皮质和皮质下结构有联系。同侧皮质联系在与背侧运动前区和前额叶皮质(PFC)相邻部分最为密集。在与其他灵长类动物补充眼区(SEF)相对应的区域有标记,这表明夜猴中存在SEF。其他联系包括与腹侧运动前皮质(PMV)、顶叶后皮质后半部、扣带回皮质、颞上沟内的视觉区域以及颞下皮质的联系。胼胝体联系主要是与另一半球的FEF区域、SEF、PFC和PMV。大多数皮质下联系是同侧的,但也有一些是双侧的。密集的双侧联系是与尾状核。最密集的相互同侧联系是与背内侧核的旁板部分、板内核和腹前核的大细胞部分。FEF的其他联系包括与屏状核、网状核、未定带、外侧后核和内侧丘脑枕核、界限核、顶盖前区、达克谢维奇核、中脑和脑桥网状结构以及脑桥核的联系。令人惊讶的是,上丘(SC)仅含有稀疏的顺行标记。虽然夜猴中FEF的大多数联系与猴子相似,但FEF与SC的联系似乎要少得多。这表明随着类人猿灵长类动物的进化,FEF对SC视觉运动功能的主要贡献才出现。

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