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Pattern separation, pattern completion, and new neuronal codes within a continuous CA3 map

机译:连续CA3映射中的模式分离,模式完成和新的神经元代码

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摘要

The hippocampal CA3 subregion is critical for rapidly encoding new memories, which suggests that neuronal computations are implemented in its circuitry that cannot be performed elsewhere in the hippocampus or in the neocortex. Recording studies show that CA3 cells are bound to a large degree to a spatial coordinate system, while CA1 cells can become more independent of a map-based mechanism and allow for a larger degree of arbitrary associations, also in the temporal domain. The mapping of CA3 onto a spatial coordinate system intuitively points to its role in spatial navigation but does not directly suggest how such a mechanism may support memory processing. Although bound to spatial coordinates, the CA3 network can rapidly alter its firing rate in response to novel sensory inputs and is thus not as strictly tied to spatial mapping as grid cells in the medial entorhinal cortex. Such rate coding within an otherwise stable spatial map can immediately incorporate new sensory inputs into the two-dimensional matrix of CA3, where they can be integrated with already stored information about each place. CA3 cell ensembles may thus support the fast acquisition of detailed memories by providing a locally continuous, but globally orthogonal representation, which can rapidly provide a new neuronal index when information is encountered for the first time. This information can be interpreted in CA1 and other downstream cortical areas in the context of less spatially restricted information.
机译:海马CA3子区域对于快速编码新记忆至关重要,这表明神经元计算是在其电路中实现的,而在海马或新皮质的其他地方则无法执行。记录研究表明,CA3细胞在很大程度上与空间坐标系绑定,而CA1细胞可以变得更加独立于基于地图的机制,并且在时域中也可以实现更大程度的任意关联。 CA3到空间坐标系上的映射直观地指出了它在空间导航中的作用,但没有直接暗示这种机制如何支持内存处理。尽管绑定到空间坐标,但是CA3网络可以响应于新的感觉输入而迅速改变其发射速率,因此不像内嗅皮质中的网格细胞那样严格地与空间映射相关。在其他情况下稳定的空间图中的这种速率编码可以立即将新的感官输入合并到CA3的二维矩阵中,在其中可以将它们与已经存储的有关每个位置的信息集成在一起。因此,CA3细胞集合体可以通过提供局部连续但全局正交的表示来支持快速获取详细的内存,当首次遇到信息时,可以快速提供新的神经元索引。可以在空间受限制较小的信息的背景下在CA1和其他下游皮质区域中解释此信息。

著录项

  • 来源
    《Learning & memory》 |2007年第11期|p.745-757|共13页
  • 作者单位

    Kavli Institute for Systems Neuroscience and Centre for the Biology of Memory, Norwegian University of Science and Technology, N-7489 Trondheim, Norway;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 心理过程与心理状态;
  • 关键词

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