Exploring the late maturation of an intrinsic episodic memory network: A resting-state fMRI study

IF 4.6 2区 医学 Q1 NEUROSCIENCES
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Abstract

Previous research suggests that episodic memory relies on functional neural networks,which are present even in the absence of an explicit task. The regions that integrate.these networks and the developmental changes in intrinsic functional connectivity.remain elusive. In the present study, we outlined an intrinsic episodic memory network.(iEMN) based on a systematic selection of functional connectivity studies, and.inspected network differences in resting-state fMRI between adolescents (13–17 years.old) and adults (23–27 years old) from the publicly available NKI-Rockland Sample.Through a review of brain regions commonly associated with episodic memory.networks, we identified a potential iEMN composed by 14 bilateral ROIs, distributed.across temporal, frontal and parietal lobes. Within this network, we found an increase.in resting-state connectivity from adolescents to adults between the right temporal pole.and two regions in the right lateral prefrontal cortex. We argue that the coordination of.these brain regions, connecting areas of semantic processing and areas of controlled.retrieval, arises as an important feature towards the full maturation of the episodic.memory system. The findings add to evidence suggesting that adolescence is a key.period in memory development and highlights the role of intrinsic functional.connectivity in such development.
探索内在外显记忆网络的晚期成熟:静息态 fMRI 研究。
以往的研究表明,外显记忆依赖于功能神经网络,这些网络即使在没有明确任务的情况下也会存在。整合这些网络的区域以及内在功能连接的发展变化仍然难以捉摸。在本研究中,我们在系统选择功能连接研究的基础上,勾勒出了一个内在外显记忆网络(iEMN),并从公开的 NKI-Rockland 样本中检测了青少年(13-17 岁)和成人(23-27 岁)之间静息态 fMRI 的网络差异。通过回顾通常与外显记忆网络相关的大脑区域,我们确定了一个潜在的 iEMN,它由 14 个双侧 ROI 组成,分布在颞叶、额叶和顶叶。在这个网络中,我们发现从青少年到成人,右侧颞极和右侧前额叶皮层的两个区域之间的静息状态连接性有所增加。我们认为,这些连接语义处理区和受控检索区的脑区之间的协调,是外显记忆系统完全成熟的一个重要特征。这些发现补充了表明青春期是记忆发展关键时期的证据,并强调了内在功能连接在这种发展中的作用。
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来源期刊
CiteScore
7.60
自引率
10.60%
发文量
124
审稿时长
6-12 weeks
期刊介绍: The journal publishes theoretical and research papers on cognitive brain development, from infancy through childhood and adolescence and into adulthood. It covers neurocognitive development and neurocognitive processing in both typical and atypical development, including social and affective aspects. Appropriate methodologies for the journal include, but are not limited to, functional neuroimaging (fMRI and MEG), electrophysiology (EEG and ERP), NIRS and transcranial magnetic stimulation, as well as other basic neuroscience approaches using cellular and animal models that directly address cognitive brain development, patient studies, case studies, post-mortem studies and pharmacological studies.
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