School of Psychology, Cardiff University, Cardiff, CF10 3AT, UK.
Eur J Neurosci. 2009 Dec 3;30(11):2177-89. doi: 10.1111/j.1460-9568.2009.07010.x. Epub 2009 Nov 25.
Two forms of account have been proposed for how animals form integrated memories for patterns of stimulation: the elemental account holds that the elements that make up the pattern become directly linked to one another, whereas the configural account holds that these elements become bound together through their capacity to activate a separate, shared configural memory. The hippocampus and perirhinal cortex have been linked to both elemental and configural processes. Here, we assessed the role of the rat hippocampus and perirhinal cortex in these distinct ways of processing patterns of sensory stimulation involving auditory, visual context and temporal information. Using selective lesions and inactivation techniques we identified a specific role for the hippocampus in the retrieval of configural memories but not of those that could be encoded elementally; we also identified a role for the rat perirhinal cortex in visual contextual learning. These results, using a novel combination of behavioural assays, provide clear support for the view that patterns of stimulation can be encoded either elementally or configurally, and that disruption of hippocampal function leaves rats reliant on elemental processes.
元素理论认为,构成模式的元素之间直接关联;而结构理论则认为,这些元素通过激活独立的、共享的结构记忆来结合在一起。海马体和边缘区与元素和结构过程都有关联。在这里,我们评估了大鼠海马体和边缘区在这些不同的处理方式中的作用,这些处理方式涉及听觉、视觉背景和时间信息等模式的感官刺激。通过选择性损伤和失活技术,我们发现海马体在提取结构记忆方面有特定作用,但在提取元素记忆方面没有作用;我们还发现了大鼠边缘区在视觉背景学习中的作用。这些结果使用了一种新颖的行为测定组合,为刺激模式可以通过元素或结构方式进行编码的观点提供了明确的支持,并且表明海马体功能的破坏使大鼠依赖于元素过程。