Umeå Center for Functional Brain Imaging, Umeå University, S-90187 Umeå, Sweden.
Department of Integrative Medical Biology, Umeå University, S-90187 Umeå, Sweden.
Cereb Cortex. 2021 Jun 10;31(7):3435-3450. doi: 10.1093/cercor/bhab023.
The hippocampal longitudinal axis has been linked to dissociated functional networks relevant to episodic memory. However, the organization of axis-dependent networks and their relation to episodic memory in aging remains less explored. Moreover, age-related deterioration of the dopamine (DA) system, affecting memory and functional network properties, might constitute a source of reduced specificity of hippocampal networks in aging. Here, we characterized axis-dependent large-scale hippocampal resting-state networks, their relevance to episodic memory, and links to DA in older individuals (n = 170, 64-68 years). Partial least squares identified 2 dissociated networks differentially connected to the anterior and posterior hippocampus. These overlapped with anterior-temporal/posterior-medial networks in young adults, indicating preserved organization of axis-dependent connectivity in old age. However, axis-specific networks were overall unrelated to memory and hippocampal DA D2 receptor availability (D2DR) measured with [11C]-raclopride positron emission tomography. Further analyses identified a memory-related network modulated by hippocampal D2DR, equally connected to anterior-posterior regions. This network included medial frontal, posterior parietal, and striatal areas. The results add to the current understanding of large-scale hippocampal connectivity in aging, demonstrating axis-dependent connectivity with dissociated anterior and posterior networks, as well as a primary role in episodic memory of connectivity shared by regions along the hippocampalaxis.
海马体的纵轴与分离的、与情景记忆相关的功能网络有关。然而,在衰老过程中,依赖于轴的网络的组织及其与情景记忆的关系仍未得到充分探索。此外,与年龄相关的多巴胺(DA)系统的恶化,影响记忆和功能网络特性,可能是海马网络特异性降低的一个原因。在这里,我们描述了依赖于轴的大规模海马体静息状态网络,它们与情景记忆的关系,以及与老年人(n=170,64-68 岁)中 DA 的关系。偏最小二乘法确定了 2 个分离的网络,它们与海马体的前、后部分有不同的连接。这些与年轻成年人的前颞叶/后内侧网络重叠,表明在老年时,依赖于轴的连接组织得到了保留。然而,特定于轴的网络总体上与记忆和海马体 D2 受体可用性(D2DR)无关,后者是通过 [11C]-raclopride 正电子发射断层扫描测量的。进一步的分析确定了一个与记忆相关的网络,受海马体 D2DR 调节,与前后区域同样连接。这个网络包括内侧额部、后顶叶和纹状体区域。研究结果增加了对衰老中海马体大范围连接的理解,证明了依赖于轴的连接与分离的前、后网络有关,以及与海马体轴沿线区域共享的连接在情景记忆中的主要作用。