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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Reaching in depth: hand position dominates over binocular eye position in the rostral superior parietal lobule.
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Reaching in depth: hand position dominates over binocular eye position in the rostral superior parietal lobule.

机译:到达深度:在头顶上小叶中,手的姿势比双眼的眼睛姿势占主导。

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摘要

Neural activity was recorded in area PE (dorsorostral part of Brodmann's area 5) of the posterior parietal cortex while monkeys performed arm reaching toward memorized targets located at different distances from the body. For any given distance, arm movements were performed while the animal kept binocular eye fixation constant. Under these conditions, the activity of a large proportion (36%) of neurons was modulated by reach distance during the memory period. By varying binocular eye position (vergence angle) and initial hand position, we found that the reaching-related activity of most neurons (61%) was influenced by changing the starting position of the hand, whereas that of a smaller, although substantial, population (13%) was influenced by changes of binocular eye position (i.e., by the angle of vergence). Furthermore, the modulation of the neural activity was better explained expressing the reach movement end-point, corresponding to the memorized target location, in terms of distance from the initial hand position, rather than from the body. These results suggest that the activity of neurons in area PE combines information about eye and hand position to encode target distance for reaching in depth predominantly in hand coordinates. This encoding mechanism is consistent with the position of PE in the functional gradient that characterizes the parieto-frontal network underlying reaching.
机译:在顶叶后皮质的PE区域(布罗德曼氏区5的背腹部分)记录了神经活动,而猴子则朝着距离身体不同距离的记忆目标伸手。对于任何给定的距离,在动物保持双眼眼固定不变的同时进行手臂运动。在这种情况下,在记忆期间,到达距离会调节大部分神经元(36%)的活动。通过改变双眼的眼睛位置(发散角)和手的初始位置,我们发现大多数神经元(61%)的到达相关活动受手的起始位置改变的影响,而较小(尽管较大)的人群的起始位置的影响(13%)受双眼眼位置变化(即,发散角)的影响。此外,更好地解释了神经活动的调节,用与初始手位置的距离(而不是距身体的距离)来表示与记忆的目标位置相对应的伸手运动终点。这些结果表明,PE区域中神经元的活动结合了有关眼睛和手位置的信息,以编码目标距离,从而主要在手坐标中达到深度。这种编码机制与PE在功能梯度中的位置一致,该梯度表征了潜在到达的顶额额网络。

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