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Conjoint Control of Hippocampal Place Cell Firing by Two Visual Stimuli: I. the Effects of Moving the Stimuli on Firing Field Positions

机译:通过两个视觉刺激共同控制海马放置细胞的射击:I.移动刺激对射击场位置的影响

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摘要

To better understand how hippocampal place cell activity is controlled by sensory stimuli, and to further elucidate the nature of the environmental representation provided by place cells, we have made recordings in the presence of two distinct visual stimuli under standard conditions and after several manipulations of these stimuli. In line with a great deal of earlier work, we find that place cell activity is constant when repeated recordings are made in the standard conditions in which the centers of the two stimuli, a black card and a white card, are separated by 135° on the wall of a cylindrical recording chamber. Rotating the two stimuli by 45° causes equal rotations of place cell firing fields. Removing either card and rotating the other card also causes fields to rotate equally, showing that the two stimuli are individually salient. Increasing or decreasing the card separation (card reconfiguration) causes a topological distortion of the representation of the cylinder floor such that field centers move relative to each other. We also found that either kind of reconfiguration induces a position-independent decrease in the intensity of place cell firing. We argue that these results are not compatible with either of two previously stated views of the place cell representation; namely, a nonspatial theory in which each place cell is tuned to an arbitrarily selected subset of available stimuli or a rigid map theory. We propose that our results imply that the representation is map-like but not rigid; it is capable of undergoing stretches without altering the local arrangement of firing fields.
机译:为了更好地理解感觉刺激如何控制海马地方细胞的活动,并进一步阐明地方细胞所提供的环境表征的性质,我们在标准条件下在两种不同视觉刺激的存在下并对其进行了几次操作后进行了录音。刺激。与大量早期工作相一致,我们发现在标准条件下进行重复录音时,放置位置细胞的活动是恒定的,在该条件下,两个刺激(黑卡和白卡)的中心在135°上分开135°。圆柱形记录室的壁。将两个刺激旋转45°会引起位置细胞激发场的相等旋转。移开其中一张卡并旋转另一张卡也会使磁场均匀旋转,这表明这两个刺激是分别突出的。增大或减小卡间距(卡重新配置)会导致气缸底面表示的拓扑失真,从而使场中心彼此相对移动。我们还发现,任何一种重新配置都会引起位置细胞激发强度的与位置无关的降低。我们认为,这些结果与先前提到的关于位置单元表示的两个视图都不兼容。也就是非空间理论,其中每个位置单元都调整为可用刺激的任意选择子集,或者是刚性图论。我们建议,我们的结果暗示该表示形式类似于地图,但并不僵化;它能够经受拉伸而不会改变射击场的局部布置。

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