O'Keefe J, Burgess N
Department of Anatomy, University College London, UK.
Nature. 1996 May 30;381(6581):425-8. doi: 10.1038/381425a0.
The human hippocampus has been implicated in memory, in particular episodic or declarative memory. In rats, hippocampal lesions cause selective spatial deficits, and hippocampal complex spike cells (place cells) exhibit spatially localized firing, suggesting a role in spatial memory, although broader functions have also been suggested. Here we report the identification of the environmental features controlling the location and shape of the receptive fields (place fields) of the place cells. This was done by recording from the same cell in four rectangular boxes that differed solely in the length of one or both sides. Most of our results are explained by a model in which the place field is formed by the summation of gaussian tuning curves, each oriented perpendicular to a box wall and peaked at a fixed distance from it.
人类海马体与记忆有关,特别是情景记忆或陈述性记忆。在大鼠中,海马体损伤会导致选择性空间缺陷,海马体复合棘状细胞(位置细胞)表现出空间定位放电,这表明其在空间记忆中发挥作用,尽管也有人提出了更广泛的功能。在此,我们报告了对控制位置细胞感受野(位置野)位置和形状的环境特征的识别。这是通过在四个仅在一侧或两侧长度上不同的矩形盒子中对同一个细胞进行记录来完成的。我们的大多数结果都可以用一个模型来解释,在这个模型中,位置野是由高斯调谐曲线的总和形成的,每条曲线都垂直于盒壁定向,并在距盒壁固定距离处达到峰值。