bioRxiv · 10.1101/2020.10.14.340075
Alzheimer's pathology is associated with dedifferentiation of functional memory networks in aging
Abstract
In presymptomatic Alzheimers disease (AD), beta-amyloid plaques (A{beta}) and tau tangles accumulate in distinct spatiotemporal patterns within the brain, tracking closely with episodic memory decline. Here, we tested whether age-related changes in the segregation of the brains functional episodic memory networks - anterior-temporal (AT) and posterior-medial (PM) networks - are associated with the accumulation of A{beta}, tau and memory decline using fMRI and PET. We found that AT and PM networks were less segregated in older than younger adults and this reduced specialization was associated with more tau and A{beta} in the same regions. The effect of network dedifferentiation on memory depended on the amount of A{beta} and tau, with low segregation and pathology associated with better performance at baseline and low segregation and high pathology related to worse performance over time. This pattern suggests a compensation phase followed by a degenerative phase in the early, preclinical phase of AD.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Cassady, K., Adams, J., Chen, X., Maass, A., Harrison, T., Landau, S., Baker, S., Jagust, W.. 2020-10-15. Alzheimer's pathology is associated with dedifferentiation of functional memory networks in aging. https://doi.org/10.1101/2020.10.14.340075
Cite the original work for its findings. Save a collection to share your selection of sources.