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在内嗅皮层内侧的网格细胞和头部方向细胞,在最近较少经历的旋转过程中,更常随着T形迷宫一起旋转。

Medial entorhinal grid cells and head direction cells rotate with a T-maze more often during less recently experienced rotations.

作者信息

Gupta Kishan, Beer Nathan J, Keller Lauren A, Hasselmo Michael E

机构信息

Center for Memory and Brain, Department of Psychology, Graduate Program for Neuroscience, Boston University, Boston, MA 02215, USA.

出版信息

Cereb Cortex. 2014 Jun;24(6):1630-44. doi: 10.1093/cercor/bht020. Epub 2013 Feb 4.

Abstract

Prior studies of head direction (HD) cells indicate strong landmark control over the preferred firing direction of these cells, with few studies exhibiting shifts away from local reference frames over time. We recorded spiking activity of grid and HD cells in the medial entorhinal cortex of rats, testing correlations of local environmental cues with the spatial tuning curves of these cells' firing fields as animals performed continuous spatial alternation on a T-maze that shared the boundaries of an open-field arena. The environment was rotated into configurations the animal had either seen or not seen in the past recording week. Tuning curves of both cell types demonstrated commensurate shifts of tuning with T-maze rotations during less recent rotations, more so than recent rotations. This strongly suggests that animals are shifting their reference frame away from the local environmental cues over time, learning to use a different reference frame more likely reliant on distal or idiothetic cues. In addition, grid fields demonstrated varying levels of "fragmentation" on the T-maze. The propensity for fragmentation does not depend on grid spacing and grid score, nor animal trajectory, indicating the cognitive treatment of environmental subcompartments is likely driven by task demands.

摘要

先前对头部方向(HD)细胞的研究表明,这些细胞的偏好放电方向受到强烈的地标控制,很少有研究表明随着时间推移会偏离局部参考系。我们记录了大鼠内侧内嗅皮层中网格细胞和HD细胞的放电活动,在动物在与开放场竞技场边界共享的T型迷宫上进行连续空间交替时,测试局部环境线索与这些细胞放电场的空间调谐曲线之间的相关性。环境被旋转成动物在过去记录周中见过或没见过的配置。在较早期的旋转过程中,两种细胞类型的调谐曲线都显示出与T型迷宫旋转相应的调谐变化,比近期旋转时更明显。这强烈表明,随着时间推移,动物正在将其参考系从局部环境线索中转移出来,学会使用更可能依赖于远端或自身运动线索的不同参考系。此外,网格场在T型迷宫上表现出不同程度的“碎片化”。碎片化的倾向不取决于网格间距和网格得分,也不取决于动物轨迹,这表明对环境子区域的认知处理可能是由任务需求驱动的。

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