论文标题

息息

Reorganization of resting state brain network functional connectivity across human brain developmental stages

论文作者

Singh, Prerna, Gandhi, Tapan Kumar, Kumar, Lalan

论文摘要

人的大脑可能会在解剖学和功能上随着衰老而进行实质性改变。认知大脑衰老本质上可以是健康的或退化的。这种认知能力的退化会导致疾病,例如阿尔茨海默氏病,痴呆症,精神分裂症和多发性硬化症。此外,大脑网络在健康衰老期间经历了各种变化,这是一个积极的研究领域。在这项研究中,我们使用公开可用的HCP数据集研究了参与者(7-89岁年龄段)的RS功能连通性。我们还探索了如何使用K-均值聚类方法聚类的不同大脑网络,这些方法已通过T-SNE算法进一步验证。还使用Brainnet查看器探索了随着脑发育阶段的变化,整体静止状态脑功能连接的变化也发生了变化。然后,已经使用线性回归研究了群集内网络和群集网络之间的变化随着年龄的增长,最终显示出具有健康衰老的大脑网络平均分离的增加/减少模式。诸如默认模式网络,cingulo opercular网络,感觉运动网络和小脑网络等大脑网络显示出降低的隔离,而额叶顶壁网和枕网网络显示出随着健康的衰老而增加的分离。我们的结果强烈表明,大脑具有四个大脑发育阶段,而大脑网络在这些大脑发育阶段重新组织了其功能连通性。

The human brain is liable to undergo substantial alterations, anatomically and functionally with aging. Cognitive brain aging can either be healthy or degenerative in nature. Such degeneration of cognitive ability can lead to disorders such as Alzheimer's disease, dementia, schizophrenia, and multiple sclerosis. Furthermore, the brain network goes through various changes during healthy aging, and it is an active area of research. In this study, we have investigated the rs-functional connectivity of participants (in the age group of 7-89 years) using a publicly available HCP dataset. We have also explored how different brain networks are clustered using K-means clustering methods which have been further validated by the t-SNE algorithm. The changes in overall resting-state brain functional connectivity with changes in brain developmental stages have also been explored using BrainNet Viewer. Then, specifically within-cluster network and between-cluster network changes with increasing age have been studied using linear regression which ultimately shows a pattern of increase/decrease in the mean segregation of brain networks with healthy aging. Brain networks like Default Mode Network, Cingulo opercular Network, Sensory Motor Network, and Cerebellum Network have shown decreased segregation whereas Frontal Parietal Network and Occipital Network show increased segregation with healthy aging. Our results strongly suggest that the brain has four brain developmental stages and brain networks reorganize their functional connectivity during these brain developmental stages.

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