Center of Rehabilitation Medicine, Yueyang Hospital of Integrated Traditional Chinese and Western Medicine, Shanghai University of Traditional Chinese Medicine, Shanghai, 200437, China.
School of Rehabilitation Science, Shanghai University of Traditional Chinese Medicine, Shanghai, 201203, China.
Alzheimers Res Ther. 2023 Mar 24;15(1):61. doi: 10.1186/s13195-023-01197-7.
Connectome mapping may reveal new treatment targets for patients with neurological and psychiatric diseases. However, the long-term delayed recall based-network with structural and functional connectome is still largely unknown. Our objectives were to (1) identify the long-term delayed recall-based cortex-hippocampus network with structural and functional connectome and (2) investigate its relationships with various cognitive functions, age, and activities of daily living.
This case-control study enrolled 131 subjects (73 amnestic mild cognitive impairment [aMCI] patients and 58 age- and education-matched healthy controls [HCs]). All subjects completed a neuropsychological battery, activities of daily living assessment, and multimodal magnetic resonance imaging. Nodes of the cortical-hippocampal network related to long-term delayed recall were identified by probabilistic fiber tracking and functional connectivity (FC) analysis. Then, the main and interaction effects of the network on cognitive functions were assessed by a generalized linear model. Finally, the moderating effects of the network on the relationships between long-term delayed recall and clinical features were analyzed by multiple regression and Hayes' bootstrap method. All the effects of cortex-hippocampus network were analyzed at the connectivity and network levels.
The result of a generalized linear model showed that the bilateral hippocampus, left dorsolateral superior frontal gyrus, right supplementary motor area, left lingual gyrus, left superior occipital gyrus, left superior parietal gyrus, left precuneus, and right temporal pole (superior temporal gyrus) are the left and right cortex-hippocampus network nodes related to long-term delayed recall (P < 0.05). Significant interaction effects were found between the Auditory Verbal Learning Test Part 5 (AVLT 5) scores and global properties of the left cortex-hippocampus network [hierarchy, clustering coefficient, characteristic path length, global efficiency, local efficiency, Sigma and synchronization (P < 0.05 Bonferroni corrected)]. Significant interaction effects were found between the general cognitive function/executive function/language and global properties of the left cortex-hippocampus network [Sigma and synchronization (P < 0.05 Bonferroni corrected)].
This study introduces a novel symptom-based network and describes relationships among cognitive functions, brain function, and age. The cortex-hippocampus network constrained by the structural and functional connectome is closely related to long-term delayed recall.
连接组图谱绘制可能为神经和精神疾病患者揭示新的治疗靶点。然而,基于结构和功能连接组的长期延迟回忆网络在很大程度上仍未被发现。我们的目标是:(1)确定具有结构和功能连接组的长期延迟回忆皮层-海马网络;(2)研究其与各种认知功能、年龄和日常生活活动的关系。
本病例对照研究纳入了 131 名受试者(73 名遗忘型轻度认知障碍[aMCI]患者和 58 名年龄和教育程度匹配的健康对照[HCs])。所有受试者均完成了神经心理学测试、日常生活活动评估和多模态磁共振成像。通过概率纤维追踪和功能连接(FC)分析确定与长期延迟回忆相关的皮质-海马网络节点。然后,通过广义线性模型评估网络对认知功能的主效应和交互效应。最后,通过多元回归和 Hayes 自举法分析网络对长期延迟回忆与临床特征之间关系的调节作用。皮质-海马网络的所有影响均在连接和网络水平上进行分析。
广义线性模型的结果显示,双侧海马体、左侧背外侧额上回、右侧辅助运动区、左侧舌回、左侧顶枕叶、左侧顶叶上回、左侧楔前叶和右侧颞极(颞上回)是与长期延迟回忆相关的左右皮质-海马网络节点(P < 0.05)。在听觉词语学习测验第 5 部分(AVLT 5)分数和左侧皮质-海马网络全局属性(层次、聚类系数、特征路径长度、全局效率、局部效率、Sigma 和同步(P < 0.05 Bonferroni 校正))之间存在显著的交互效应。在一般认知功能/执行功能/语言和左侧皮质-海马网络全局属性(Sigma 和同步(P < 0.05 Bonferroni 校正))之间存在显著的交互效应。
本研究引入了一种新的基于症状的网络,并描述了认知功能、大脑功能和年龄之间的关系。受结构和功能连接组约束的皮质-海马网络与长期延迟回忆密切相关。