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Place cells head direction cells and the learning of landmark stability

机译:放置单元格头部方向单元格以及界标稳定性的学习

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摘要

Previous studies have shown that hippocampal place fields are controlled by the salient sensory cues in the environment, in that rotation of the cues causes an equal rotation of the place fields. We trained rats to forage for food pellets in a gray cylinder with a single salient directional cue, a white card covering 90 degrees of the cylinder wall. Half of the rats were disoriented before being placed in the cylinder, in order to disrupt their internal sense of direction. The other half were not disoriented before being placed in the cylinder; for these rats, there was presumably a consistent relationship between the cue card and their internal direction sense. We subsequently recorded hippocampal place cells and thalamic head direction cells from both groups of rats as they moved in the cylinder; between some sessions the cylinder and cue card were rotated to a new direction. All rats were disoriented before recording. Under these conditions, the cue card had much weaker control over the place fields and head direction cells in the rats that had been disoriented during training than in the rats that had not been disoriented. For the former group, the place fields often rotated relative to the cue card or completely changed their firing properties between sessions. In all recording sessions, the head direction cells and place cells were strongly coupled. It appears that the strength of cue control over place cells and head direction cells depends on the rat's learned perception of the stability of the cues.
机译:先前的研究表明,海马位置场受环境中显着的感觉线索的控制,因为线索的旋转会引起位置场的相等旋转。我们训练了大鼠在具有单个突出方向提示的灰色圆柱体中觅食食物颗粒,该白色提示覆盖圆柱体壁90度。一半大鼠在放入圆柱体之前会迷失方向,以破坏其内部方向感。另一半在放入圆筒之前并未迷失方向。对于这些大鼠,提示卡与其内部方向感之间可能存在一致的关系。随后,我们记录了两组大鼠在圆柱体内移动时海马位置细胞和丘脑头部方向细胞的分布情况。在某些会话之间,将气瓶和提示卡旋转到新的方向。记录前所有大鼠都迷失了方向。在这种情况下,提示卡对训练过程中迷失方向的大鼠的位置场和头部方向细胞的控制要比未迷失方向的大鼠弱得多。对于前一组,位置字段通常相对于提示卡旋转或在会话之间完全更改其触发属性。在所有录制会话中,头部方向单元格和位置单元都紧密耦合。似乎对位置细胞和头部方向细胞进行提示控制的强度取决于大鼠对提示稳定性的了解。

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