Risius Okka J, Onur Oezguer A, Dronse Julian, von Reutern Boris, Richter Nils, Fink Gereon R, Kukolja Juraj
Cognitive Neuroscience, Institute of Neuroscience and Medicine (INM-3), Research Centre Jülich, Jülich, Germany.
Department of Neurology, University Hospital Cologne, Cologne, Germany.
Front Hum Neurosci. 2019 Jan 9;12:528. doi: 10.3389/fnhum.2018.00528. eCollection 2018.
Commonly, a switch between networks mediating memory encoding and those mediating retrieval is observed. This may not only be due to differential involvement of neural resources due to distinct cognitive processes but could also reflect the formation of new memory traces and their dynamic change during consolidation. We used resting state fMRI to measure functional connectivity (FC) changes during post-encoding rest, hypothesizing that during this phase, new functional connections between encoding- and retrieval-related regions are created. Interfering and reminding tasks served as experimental modulators to corroborate that the observed FC differences indeed reflect changes specific to post-encoding rest. The right inferior occipital and fusiform gyri (active during encoding) showed increased FC with the left inferior frontal gyrus and the left middle temporal gyrus (MTG) during post-encoding rest. Importantly, the left MTG subsequently also mediated successful retrieval. This finding might reflect the formation of functional connections between encoding- and retrieval-related regions during undisturbed post-encoding rest. These connections were vulnerable to experimental modulation: Cognitive interference disrupted FC changes during post-encoding rest resulting in poorer memory performance. The presentation of reminders also inhibited FC increases but without affecting memory performance. Our results contribute to a better understanding of the mechanisms by which post-encoding rest bridges the gap between encoding- and retrieval-related networks.
通常情况下,会观察到介导记忆编码的网络与介导记忆检索的网络之间的转换。这可能不仅是由于不同认知过程对神经资源的不同参与,还可能反映了新记忆痕迹的形成及其在巩固过程中的动态变化。我们使用静息态功能磁共振成像来测量编码后休息期间的功能连接(FC)变化,假设在此阶段,编码相关区域和检索相关区域之间会形成新的功能连接。干扰任务和提醒任务作为实验调节因素,以证实观察到的FC差异确实反映了编码后休息特有的变化。右侧枕下回和梭状回(编码期间活跃)在编码后休息期间与左侧额下回和左侧颞中回(MTG)的FC增加。重要的是,左侧MTG随后也介导了成功的检索。这一发现可能反映了在不受干扰的编码后休息期间,编码相关区域和检索相关区域之间功能连接的形成。这些连接容易受到实验调节的影响:认知干扰会破坏编码后休息期间的FC变化,导致记忆表现较差。提醒的呈现也会抑制FC增加,但不影响记忆表现。我们的结果有助于更好地理解编码后休息在弥合编码相关网络和检索相关网络之间差距的机制。