Anderson Michael I, Jeffery Kathryn J
Department of Psychology, University College London, London, WC1H OAP, United Kingdom.
J Neurosci. 2003 Oct 1;23(26):8827-35. doi: 10.1523/JNEUROSCI.23-26-08827.2003.
Hippocampal place cells show spatially localized activity that can be modulated by both geometric information (e.g., the distances and directions of features in the environment) and nongeometric information (e.g., colors, odors, and possibly behaviors). Nongeometric information may allow the discrimination of different spatial contexts. Understanding how nongeometric (or contextual) information affects hippocampal activity is important in light of proposals that the hippocampus may play a role in constructing a representation of spatial context. We investigated the contextual modulation of place cell activity by recording hippocampal place cells while rats foraged in compound contexts comprising black or white color paired with lemon or vanilla odor. Some cells responded to the color or odor changes alone, but most responded to varying combinations of both. Thus, we demonstrate, for the first time, that there is a heterogeneous input by contextual inputs into the hippocampus. We propose a model of contextual remapping of place cells in which the geometric inputs are selectively activated by subsets of contextual stimuli. Because it appears that different place cells are affected by different subsets of contextual stimuli, the representation of the entire context would require activity at the population level, supporting a role for the hippocampus in constructing a representation of spatial context.
海马体位置细胞表现出空间局部化活动,这种活动可受到几何信息(例如环境中特征的距离和方向)和非几何信息(例如颜色、气味以及可能的行为)的调节。非几何信息可能有助于区分不同的空间背景。鉴于有观点认为海马体可能在构建空间背景表征中发挥作用,了解非几何(或背景)信息如何影响海马体活动就显得很重要。我们通过记录大鼠在由黑色或白色与柠檬或香草气味配对组成的复合背景中觅食时的海马体位置细胞,研究了位置细胞活动的背景调节。一些细胞仅对颜色或气味变化有反应,但大多数细胞对两者的不同组合有反应。因此,我们首次证明,背景输入对海马体存在异质性输入。我们提出了一个位置细胞背景重映射模型,其中几何输入由背景刺激的子集选择性激活。由于不同的位置细胞似乎受到不同背景刺激子集的影响,整个背景的表征将需要群体水平的活动,这支持了海马体在构建空间背景表征中的作用。