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The relationship between monkey hippocampus place-related neural activity and action in space.

机译:猴子海马体地方相关神经活动与空间活动之间的关系。

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摘要

To solve complex spatial problems like visual scanning and spatial navigation, animals must explore and actively sense an array of environmental stimuli. Recent studies have led to an agreement that the hippocampal formation (HF) is essential to the internal representation of spatial relation in animals. In the present study, neural activity was recorded from the HF of three monkeys, which steered a cab to various locations by pressing the appropriate bars (spatial moving task). Place-related activity of most HF neurons persisted even if the direction the monkey faced was rotated during the task. However, when the experimenter, rather than the monkey, controlled the device, the place-related neural activity of most HF neurons turned out to be obscure. The results suggest that the HF represents space effectively in situations in which the animal acts in space.
机译:为了解决视觉扫描和空间导航等复杂的空间问题,动物必须探索并积极感知一系列环境刺激。最近的研究导致达成一个共识,即海马结构(HF)对于动物内部空间关系的内部表示至关重要。在本研究中,从三只猴子的心力衰竭中记录了神经活动,它们通过按下适当的横杆(空间移动任务)将驾驶室引导到各个位置。即使在工作过程中猴子面对的方向旋转,大多数HF神经元的与位置相关的活动仍然持续。但是,当实验者而不是猴子控制设备时,大多数HF神经元的与位置相关的神经活动却变得模糊。结果表明,HF在动物在太空中活动的情况下有效地表示太空。

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