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首页> 外文期刊>Journal of Neurophysiology >Corticocortical input to the smooth and saccadic eye movement subregions of the frontal eye field in Cebus monkeys.
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Corticocortical input to the smooth and saccadic eye movement subregions of the frontal eye field in Cebus monkeys.

机译:大脑皮层输入到Cebus猴子的额眼视野的平滑和眼跳运动子区域。

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1. The locations and connections of the smooth and saccadic eye movement subregions of the frontal eye field (FEFsem and FEFsac, respectively) were investigated in seven hemispheres of five Cebus monkeys. The supplementary eye field was also mapped in seven hemispheres and the hand/arm regions of the dorsal and ventral premotor areas were localized in five hemispheres. Monkeys were immobilized during experiments with Telazol, a dissociative anesthetic agent that has no significant effect on microstimulation-induced eye movement parameters (threshold, velocity, and duration). The functional subregions were defined with the use of low threshold intracortical microstimulation (current < or = 50 microA). Then different retrogradely transported fluorescent tracers were placed into these functionally defined regions. 2. The FEFsac in Cebus monkey is in the same location as the one in macaque monkeys, which is in Walker's areas 8a and 45. The FEFsem is located in the posterior shoulder of the superior arcuatesulcus near its medial tip and is therefore more accessible for tracer injections than the one in macaque monkeys. This subregion is within cytoarchitectural area 6a beta, which is distinct from the adjacent area 6a alpha (dorsal premotor area). This smooth eye movement subregion may be comparable with the one in macaque monkeys. 3. Cortical connection patterns of the FEFsac and FEFsem are similar and parallel to each other. The predominant neural input to these two subregions originates in other cortical eye fields, including the supplementary eye field, the parietal eye field, the middle superior temporal area, and the principal sulcus region. These cortical eye fields each contain two separate, almost non-overlapping, distributions of labeled neurons that project to the corresponding frontal eye field (FEF) subregions. These results suggest that there may be similar, but relatively independent, parallel corticocortical networks to control pursuit and saccadic eye movements. The weak connections between themiddle temporal area (MT) and FEF suggest that the MT may not provide the major source of visuomotion inputs to the FEF, but that it rather plays a role in mediating visual information that is relayed from the striate and extrastriate cortices via MT to the parietal cortex and then to the FEF. In addition to the well-known neural connections between the lateral intraparietal area and the FEF, additional parietal projections have been demonstrated from the dorsomedial visual area area specifically to the FEFsac and from area 7m specifically to the FEFsem.
机译:1.在五只Cebus猴子的七个半球中,研究了额眼视野的平滑和眼跳运动子区域(分别为FEFsem和FEFsac)的位置和连接。辅助视场也被绘制在七个半球中,背和腹前运动区的手/臂区域位于五个半球中。在实验中,使用Telazol(一种解离性麻醉剂,对微刺激诱导的眼动参数(阈值,速度和持续时间)无明显影响)固定了猴子。通过使用低阈值皮质内微刺激(电流<或= 50 microA)定义功能子区域。然后将不同的逆行运输的荧光示踪剂置于这些功能定义的区域中。 2. Cebus猴子中的FEFsac与猕猴中的FEFsac位于相同的位置,位于Walker的8a和45区。FEFsem位于上弓形舌的后肩,靠近内侧尖端,因此更容易接近示踪剂注射比猕猴注射。该子区域位于细胞结构区域6a beta中,该区域不同于相邻的区域6a alpha(背运动前区域)。这种平滑的眼球运动子区域可以与猕猴中的子区域相媲美。 3. FEFsac和FEFsem的皮质连接模式相似且彼此平行。这两个子区域的主要神经输入来自其他皮质眼视野,包括补充眼视野,顶眼视野,颞中上区和主沟区域。这些皮质眼视野各自包含两个单独的,几乎不重叠的标记神经元分布,这些分布到相应的额叶视野(FEF)子区域。这些结果表明,可能存在相似但相对独立的平行皮层网络,以控制追赶和眼跳运动。颞中部区域(MT)与FEF之间的联系较弱,这表明MT可能不会为FEF提供视觉运动输入的主要来源,而是在介导通过皮层和皮层皮层皮质传递的视觉信息方面发挥作用MT到达顶叶皮层,然后到达FEF。除了侧顶壁内区域和FEF之间的众所周知的神经联系外,从背侧视区到FEFsac以及从7m区域到FEFsem还显示了其他顶突。

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