Departments of Physiology and Pharmacology and Neurology and The Robert F. Furchgott Center for Neural and Behavioral Science, State University of New York, Downstate Medical Center, New York, New York 11203, USA.
J Neurosci. 2010 Mar 31;30(13):4613-25. doi: 10.1523/JNEUROSCI.5576-09.2010.
Hippocampus place cell discharge is an important model system for understanding cognition, but evidence is missing that the place code is under the kind of dynamic attentional control characterized in primates as selective activation of one neural representation and suppression of another, competing representation. We investigated the apparent noise ("overdispersion") in the CA1 place code, hypothesizing that overdispersion results from discharge fluctuations as spatial attention alternates between distal cues and local/self-motion cues. The hypothesis predicts that: (1) preferential use of distal cues will decrease overdispersion; (2) global, attention-like states can be decoded from ensemble discharge such that both the discharge rates and the spatial firing patterns of individual cells will be distinct in the two states; (3) identifying attention-like states improves reconstructions of the rat's path from ensemble discharge. These predictions were confirmed, implying that a covert, dynamic attention-like process modulates discharge on a approximately 1 s time scale. We conclude the hippocampus place code is a dynamic representation of the spatial information in the immediate focus of attention.
海马体位置细胞放电是理解认知的重要模型系统,但缺乏证据表明位置代码受到那种在灵长类动物中表现为选择性激活一种神经表示和抑制另一种竞争表示的动态注意控制的影响。我们研究了 CA1 位置代码中的明显噪声(“过度分散”),假设过度分散是由于空间注意力在远端线索和局部/自身运动线索之间交替时放电波动引起的。该假设预测:(1)优先使用远端线索会降低过度分散;(2)可以从整体放电中解码出类似注意的状态,使得单个细胞的放电率和空间发射模式在两种状态下都具有明显区别;(3)识别类似注意的状态可以改善从整体放电中重建大鼠路径。这些预测得到了证实,这意味着一种隐蔽的、动态的类似注意过程以大约 1 秒的时间尺度调节放电。我们得出结论,海马体位置代码是注意力焦点内空间信息的动态表示。