Dragoi George, Tonegawa Susumu
The Picower Institute for Learning and Memory, RIKEN-MIT Center for Neural Circuit Genetics, Department of Biology and Department of Brain and Cognitive Sciences, Massachusetts Institute of Technology, , Cambridge, MA 02139, USA.
Philos Trans R Soc Lond B Biol Sci. 2013 Dec 23;369(1635):20120522. doi: 10.1098/rstb.2012.0522. Print 2014 Feb 5.
Internal representations about the external world can be driven by the external stimuli or can be internally generated in their absence. It has been a matter of debate whether novel stimuli from the external world are instructive over the brain network to create de novo representations or, alternatively, are selecting from existing pre-representations hosted in preconfigured brain networks. The hippocampus is a brain area necessary for normal internally generated spatial-temporal representations and its dysfunctions have resulted in anterograde amnesia, impaired imagining of new experiences, and hallucinations. The compressed temporal sequence of place cell activity in the rodent hippocampus serves as an animal model of internal representation of the external space. Based on our recent results on the phenomenon of novel place cell sequence preplay, we submit that the place cell sequence of a novel spatial experience is determined, in part, by a selection of a set of cellular firing sequences from a repertoire of existing temporal firing sequences in the hippocampal network. Conceptually, this indicates that novel stimuli from the external world select from their pre-representations rather than create de novo our internal representations of the world.
关于外部世界的内部表征可以由外部刺激驱动,也可以在没有外部刺激的情况下在内部产生。外部世界的新刺激是指导大脑网络创建全新表征,还是从预先配置的大脑网络中已有的预表征中进行选择,一直是一个有争议的问题。海马体是正常内部产生的时空表征所必需的脑区,其功能障碍会导致顺行性遗忘、新体验想象受损和幻觉。啮齿动物海马体中位置细胞活动的压缩时间序列充当外部空间内部表征的动物模型。基于我们最近关于新位置细胞序列预演现象的研究结果,我们认为新空间体验的位置细胞序列部分是由从海马网络中现有时间放电序列库中选择一组细胞放电序列决定的。从概念上讲,这表明来自外部世界的新刺激是从它们的预表征中进行选择,而不是全新创建我们对世界的内部表征。