Griffin Amy L, Hallock Henry L
Department of Psychology, University of Delaware , Newark, DE , USA.
Front Behav Neurosci. 2013 May 23;7:54. doi: 10.3389/fnbeh.2013.00054. eCollection 2013.
What hippocampal neural firing patterns signal memory and, more importantly, how is this memory code used by associated structures to translate a memory into a decision or action? Candidate hippocampal activity patterns will be discussed including (1) trajectory-specific firing of place cells with place fields on an overlapping segment of two (or more) distinct trajectories (2) prospective firing of hippocampal neurons that signal an upcoming event or action, and (3) place cell remapping to changes in environment and task. To date, there has not been compelling evidence for any of these activity patterns being the neural substrate of episodic memory. New findings suggest that learning and memory processes are emergent properties of interregional interactions and not localized within any one discrete brain region. Therefore, the next step in understanding how remapping and trajectory coding participate in memory coding may be to investigate how these activity patterns relate to activity in anatomically connected structures such as the prefrontal cortex.
海马体的神经放电模式传递了怎样的记忆信号,更重要的是,相关结构如何利用这种记忆编码将记忆转化为决策或行动?本文将讨论海马体可能的活动模式,包括:(1)位置细胞在两条(或多条)不同轨迹的重叠部分具有位置野的轨迹特异性放电;(2)海马神经元的前瞻性放电,其预示即将发生的事件或行动;(3)位置细胞根据环境和任务的变化进行重映射。迄今为止,尚无确凿证据表明这些活动模式中的任何一种是情景记忆的神经基础。新的研究结果表明,学习和记忆过程是区域间相互作用的涌现特性,而非局限于任何一个离散的脑区。因此,理解重映射和轨迹编码如何参与记忆编码的下一步可能是研究这些活动模式与诸如前额叶皮层等解剖学上相连结构的活动之间的关系。