首页> 外文期刊>Cerebral cortex >Eye-hand coordination during reaching. II. An analysis of the relationships between visuomanual signals in parietal cortex and parieto-frontal association projections.
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Eye-hand coordination during reaching. II. An analysis of the relationships between visuomanual signals in parietal cortex and parieto-frontal association projections.

机译:伸手时的眼手协调。二。顶叶皮质视觉信号与顶额-额叶协会投影之间的关系分析。

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The relationships between the distribution of visuomanual signals in parietal cortex and that of parieto-frontal projections are the subject of the present study. Single cell recording was performed in areas PEc and V6A, where different anatomical tracers were also injected. The monkeys performed a variety of behavioral tasks, aimed at studying the visual and motor properties of parietal cells, as well as the potential combination of retinal-, eye- and hand-related signals on cell activity. The activity of most cells was related to the direction of movement and the active position of the hand. Many of these reach-related cells were influenced by eye position information. Fewer cells displayed relationships to saccadic eye movements. The activity of most neurons related to a combination of both hand and eye signals. Many cells were also modulated during preparation for hand movement. Light-dark differences of activity were common and interpreted as related to the sight and monitoring of hand motion and/or position in the visual field. Most cells studied were very sensitive to moving visual stimuli and also responded to optic flow stimulation. Visual receptive fields were generally large and extended to the periphery of the visual field. For most neurons, the orientation of the preferred directions computed across different epochs and tasks conditions clustered within a limited sector of space, the field of global tuning. This can be regarded as an ideal frame to combine spatially congruent eye- and hand-related information for different forms of visuomanual behavior. All these properties were common to both PEc and V6A. Retinal, eye- and hand-related activity types, as well as parieto-frontal association cells, were distributed in a periodic fashion across the tangential domain of areas PEc and V6A. These functional and anatomical distributions were characterized and compared through a spectral and coherency analysis, which revealed the existence of a selective 'match' between activity types and parieto-frontal connections. This match depended on where each individual efferent projection was addressed. The results of the present and of the companion study can be relevant for a re-interpretation of optic ataxia as the consequence of the breakdown of the combination of retinal-, eye- and hand-related directional signals within the global tuning fields of parietal neurons.
机译:顶叶皮层中视觉信号的分布与顶叶额叶投影之间的关系是本研究的主题。在PEc和V6A区域进行了单细胞记录,其中还注入了不同的解剖示踪剂。猴子执行了各种行为任务,旨在研究壁细胞的视觉和运动特性,以及视网膜,眼睛和手相关信号对细胞活性的潜在组合。大多数细胞的活动与运动的方向和手的活动位置有关。这些与触及率相关的细胞中有许多受到眼睛位置信息的影响。较少的细胞显示出与眼球跳动的关系。大多数神经元的活动与手和眼信号的组合有关。在准备动手的过程中,许多细胞也被调节。活动的明暗差异是常见的,并被解释为与视觉以及对视野中手部运动和/或位置的监视有关。研究的大多数细胞对运动的视觉刺激非常敏感,并对光流刺激也有反应。视觉感受野通常很大,并延伸到视野的外围。对于大多数神经元而言,跨不同时期和任务条件计算出的首选方向的方向聚集在有限的空间区域内,即全局调整领域。这可以被视为理想的框架,可以将空间一致的与眼睛和手相关的信息结合起来,以用于不同形式的视觉行为。所有这些特性都是PEc和V6A共有的。视网膜,眼和手相关的活动类型以及顶额-额叶相关细胞以周期性的方式分布在PEc和V6A区域的切向域中。通过光谱和相干性分析对这些功能和解剖分布进行了表征和比较,发现活动类型和顶额额叶连接之间存在选择性的“匹配”。该匹配取决于每个单独的传出投影的处理位置。本研究和伴随研究的结果可能与视神经共济失调的重新解释有关,因为视网膜,眼和手相关方向信号的组合在顶神经元的整体调节范围内破裂。

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