Borne Léonie, Tian Ye, Lupton Michelle K, van der Meer Johan N, Jeganathan Jayson, Paton Bryan, Koussis Nikitas, Guo Christine C, Robinson Gail A, Fripp Jurgen, Zalesky Andrew, Breakspear Michael
School of Psychological Sciences, College of Engineering, Science and the Environment, University of Newcastle, Callaghan, NSW, Australia.
Melbourne Neuropsychiatry Centre, Department of Psychiatry, University of Melbourne, Melbourne, VIC, Australia.
Neuroimage. 2023 May 1;271:119996. doi: 10.1016/j.neuroimage.2023.119996. Epub 2023 Mar 1.
The functional organization of the hippocampus mirrors that of the cortex, changing smoothly along connectivity gradients and abruptly at inter-areal boundaries. Hippocampal-dependent cognitive processes require flexible integration of these hippocampal gradients into functionally related cortical networks. To understand the cognitive relevance of this functional embedding, we acquired fMRI data while participants viewed brief news clips, either containing or lacking recently familiarized cues. Participants were 188 healthy mid-life adults and 31 adults with mild cognitive impairment (MCI) or Alzheimer's disease (AD). We employed a recently developed technique - connectivity gradientography - to study gradually changing patterns of voxel to whole brain functional connectivity and their sudden transitions. We observed that functional connectivity gradients of the anterior hippocampus map onto connectivity gradients across the default mode network during these naturalistic stimuli. The presence of familiar cues in the news clips accentuates a stepwise transition across the boundary from the anterior to the posterior hippocampus. This functional transition is shifted in the posterior direction in the left hippocampus of individuals with MCI or AD. These findings shed new light on the functional integration of hippocampal connectivity gradients into large-scale cortical networks, how these adapt with memory context and how these change in the presence of neurodegenerative disease.
海马体的功能组织与皮质的功能组织相似,沿着连接梯度平滑变化,而在区域间边界处则突然变化。依赖海马体的认知过程需要将这些海马体梯度灵活地整合到功能相关的皮质网络中。为了理解这种功能嵌入的认知相关性,我们在参与者观看简短新闻片段时获取了功能磁共振成像(fMRI)数据,这些新闻片段要么包含要么缺少最近熟悉的线索。参与者包括188名健康的中年成年人以及31名患有轻度认知障碍(MCI)或阿尔茨海默病(AD)的成年人。我们采用了一种最近开发的技术——连接梯度成像术——来研究体素到全脑功能连接的逐渐变化模式及其突然转变。我们观察到,在这些自然主义刺激过程中,前海马体的功能连接梯度映射到默认模式网络的连接梯度上。新闻片段中熟悉线索的存在加剧了从前海马体到后海马体边界的逐步转变。在患有MCI或AD的个体的左海马体中,这种功能转变向后移位。这些发现为海马体连接梯度在大规模皮质网络中的功能整合、这些梯度如何随记忆背景而适应以及在神经退行性疾病存在时这些梯度如何变化提供了新的见解。