Swammerdam Institute for Life Sciences, Faculty of Science, University of Amsterdam, Amsterdam, The Netherlands.
PLoS One. 2011 Apr 11;6(4):e17463. doi: 10.1371/journal.pone.0017463.
The brain's default mode network (DMN) is activated during internally-oriented tasks and shows strong coherence in spontaneous rest activity. Despite a surge of recent interest, the functional role of the DMN remains poorly understood. Interestingly, the DMN activates during retrieval of past events but deactivates during encoding of novel events into memory. One hypothesis is that these opposing effects reflect a difference between attentional orienting towards internal events, such as retrieved memories, vs. external events, such as to-be-encoded stimuli. Another hypothesis is that hippocampal regions are coupled with the DMN during retrieval but decoupled from the DMN during encoding. The present fMRI study investigated these two hypotheses by combining a resting-state coherence analysis with a task that measured the encoding and retrieval of both internally-generated and externally-presented events. Results revealed that the main DMN regions were activated during retrieval but deactivated during encoding. Counter to the internal orienting hypothesis, this pattern was not modulated by whether memory events were internal or external. Consistent with the hippocampal coupling hypothesis, the hippocampus behaved like other DMN regions during retrieval but not during encoding. Taken together, our findings clarify the relationship between the DMN and the neural correlates of memory retrieval and encoding.
大脑的默认模式网络(DMN)在内部导向任务中被激活,并在自发休息活动中表现出强烈的相干性。尽管最近人们对 DMN 的兴趣大增,但 DMN 的功能作用仍知之甚少。有趣的是,DMN 在回忆过去事件时被激活,但在将新事件编码到记忆中时会失活。一种假设是,这些相反的效应反映了注意力对内隐事件(如回忆的记忆)和外显事件(如待编码的刺激)的定向之间的差异。另一种假设是,在回忆时海马区与 DMN 耦合,但在编码时与 DMN 解耦。本 fMRI 研究通过将静息状态相干性分析与一项测量内源性和外源性事件的编码和回忆的任务相结合,来验证这两个假设。结果表明,主要的 DMN 区域在回忆时被激活,但在编码时失活。与内部定向假说相反,这种模式不受记忆事件是内隐还是外显的影响。与海马耦合假说一致,海马在回忆时的表现与其他 DMN 区域相似,但在编码时则不然。总之,我们的发现阐明了 DMN 与记忆检索和编码的神经相关物之间的关系。