Department of Information Engineering, University of Padova, 35131 Padova, Italy; Padova Neuroscience Center (PNC), University of Padova, 35131 Padova, Italy.
Padova Neuroscience Center (PNC), University of Padova, 35131 Padova, Italy; Department of Neuroscience, University of Padova, 35128 Padova, Italy.
Neuroimage. 2022 Aug 15;257:119280. doi: 10.1016/j.neuroimage.2022.119280. Epub 2022 May 4.
The brain consumes the most energy per relative mass amongst the organs in the human body. Theoretical and empirical studies have shown that behavioral processes are relatively inexpensive metabolically, and that most energy goes to maintaining the status quo, i.e., the balance of cell membranes' resting potentials and subthreshold spontaneous activity. Spontaneous activity fluctuates across brain regions in a correlated fashion that defines multi-scale hierarchical networks called resting-state networks (RSNs). Different regions of the brain display different metabolic consumption, but the relationship between regional brain metabolism and RSNs is still under investigation. Here, we examine the variability of glucose metabolism across brain regions, measured with the relative standard uptake value (SUVR) using F-FDG PET, and the topology of RSNs, measured through graph analysis applied to fMRI resting-state functional connectivity (FC). We found a moderate linear relationship between the strength (STR) of pairwise regional FC and metabolism. Moreover, the linear correlation between SUVR and STR grew stronger as we considered more connected regions (hubs). Regions connecting different RSNs, or connector hubs, showed higher SUVR than regions connecting nodes within the same RSN, or provincial hubs. Our results show that functional connections as probed by fMRI are related to glucose metabolism, especially in a system of provincial and connector hubs.
大脑在人体器官中以相对质量消耗最多的能量。理论和实证研究表明,行为过程在代谢上相对便宜,并且大部分能量用于维持现状,即细胞膜静息电位和亚阈值自发活动的平衡。自发活动在大脑区域之间以相关的方式波动,定义了称为静息状态网络 (RSN) 的多尺度层次网络。大脑的不同区域显示出不同的代谢消耗,但区域脑代谢与 RSN 之间的关系仍在研究中。在这里,我们使用 F-FDG PET 测量的相对标准摄取值 (SUVR) 检查大脑区域之间葡萄糖代谢的可变性,以及通过应用于 fMRI 静息状态功能连接 (FC) 的图分析测量的 RSN 的拓扑结构。我们发现成对区域 FC 的强度 (STR) 与代谢之间存在中度线性关系。此外,随着我们考虑更多连接的区域(集线器),SUVR 和 STR 之间的线性相关性变得更强。连接不同 RSN 的区域,或连接器集线器,比连接同一 RSN 内节点的区域,或省级集线器,显示出更高的 SUVR。我们的结果表明,fMRI 探测到的功能连接与葡萄糖代谢有关,特别是在省级和连接器集线器系统中。