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连接主义模型可能有助于揭示视觉引导的伸手动作的神经机制。

A connectionist model may shed light on neural mechanisms for visually guided reaching.

机构信息

California Institute of Technology.

出版信息

J Cogn Neurosci. 1991 Summer;3(3):273-92. doi: 10.1162/jocn.1991.3.3.273.

DOI:10.1162/jocn.1991.3.3.273
PMID:23964842
Abstract

Abstract Formal principles of vision-based planning and control of arm movements are used to gain insight into the neurobio-logical mechanisms that underlie this important class of sen-sorimotor behavior. The primary conceptual tool used in this work has been a neurally inspired connectionist system called MURPHY that learns to reach for visual targets among obstacles, crudely based on the style of architecture and representations in sensory and motor areas of cerebral cortex. This system has provided a concrete implementation that demonstrates how areas of cerebral cortex could in principle interact to direct both sensory-locked and internally planned reaching movements. We use MURPHY'S simple, artificial "cortex" as a point of departure in the development of two high-level cortical models for visual limb control, involving the supplementary motor area (SMA), areas 5 and 7 of the posterior parietal lobe, and several visually responsive areas including V2, PO, and areas TPO and STP in the upper bank of the superior temporal sulcus.

摘要

摘要 基于视觉的手臂运动规划和控制的形式原则被用于深入了解支撑这一重要类别的感觉运动行为的神经生物学机制。这项工作中使用的主要概念工具是一种受神经启发的连接主义系统,称为 MURPHY,它可以学习在障碍物中寻找视觉目标,这是基于大脑感觉和运动区域的架构和表示方式的粗略模仿。该系统提供了一个具体的实现,展示了大脑皮层的各个区域如何原则上相互作用,以指导感觉锁定和内部计划的到达运动。我们使用 MURPHY 简单的、人工的“皮质”作为两个高级皮质视觉肢体控制模型的起点,涉及辅助运动区(SMA)、后顶叶的 5 区和 7 区以及几个视觉反应区,包括上颞沟上壁的 V2、PO 和 TPO 和 STP 区。

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A connectionist model may shed light on neural mechanisms for visually guided reaching.连接主义模型可能有助于揭示视觉引导的伸手动作的神经机制。
J Cogn Neurosci. 1991 Summer;3(3):273-92. doi: 10.1162/jocn.1991.3.3.273.
2
Posterior parietal cortex in rhesus monkey: I. Parcellation of areas based on distinctive limbic and sensory corticocortical connections.恒河猴的后顶叶皮层:I. 基于独特的边缘和感觉皮质-皮质连接对区域进行划分
J Comp Neurol. 1989 Sep 22;287(4):393-421. doi: 10.1002/cne.902870402.
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Pathways for motion analysis: cortical connections of the medial superior temporal and fundus of the superior temporal visual areas in the macaque.运动分析的通路:猕猴内侧颞上区和颞上视觉区底部的皮质连接
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Visuomotor coordination and motor representation by human temporal lobe neurons.人类颞叶神经元的运动感知协调和运动表现。
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Post-rolandic cortical projections of the superior temporal sulcus in the rhesus monkey.恒河猴颞上沟的罗兰后皮质投射
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Posterior parietal cortex in rhesus monkey: II. Evidence for segregated corticocortical networks linking sensory and limbic areas with the frontal lobe.恒河猴的后顶叶皮层:II. 将感觉区和边缘区与额叶相连的分离的皮质-皮质网络的证据
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Parietal, temporal, and occipital projections to cortex of the superior temporal sulcus in the rhesus monkey: a retrograde tracer study.恒河猴顶叶、颞叶和枕叶至颞上沟皮质的投射:一项逆行示踪研究
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Neural activity in monkey dorsal and ventral cingulate motor areas: comparison with the supplementary motor area.猴子背侧和腹侧扣带运动区的神经活动:与辅助运动区的比较。
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Neural basis for the processes that underlie visually guided and internally guided force control in humans.人类视觉引导和内部引导力控制背后过程的神经基础。
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The posterior parietal cortex: sensorimotor interface for the planning and online control of visually guided movements.后顶叶皮层:视觉引导运动规划和在线控制的感觉运动接口。
Neuropsychologia. 2006;44(13):2594-606. doi: 10.1016/j.neuropsychologia.2005.10.011. Epub 2005 Nov 21.

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