[HTML][HTML] Menopause impacts human brain structure, connectivity, energy metabolism, and amyloid-beta deposition

L Mosconi, V Berti, J Dyke, E Schelbaum, S Jett… - Scientific reports, 2021 - nature.com
All women undergo the menopause transition (MT), a neuro-endocrinological process that
impacts aging trajectories of multiple organ systems including brain. The MT occurs over …

[HTML][HTML] Menopause impacts human brain structure, connectivity, energy metabolism, and amyloid-beta deposition

L Mosconi, V Berti, J Dyke, E Schelbaum, S Jett… - Scientific …, 2021 - ncbi.nlm.nih.gov
All women undergo the menopause transition (MT), a neuro-endocrinological process that
impacts aging trajectories of multiple organ systems including brain. The MT occurs over …

Menopause impacts human brain structure, connectivity, energy metabolism, and amyloid-beta deposition

L Mosconi, V Berti, J Dyke, E Schelbaum, S Jett… - 2021 - repository.arizona.edu
All women undergo the menopause transition (MT), a neuro-endocrinological process that
impacts aging trajectories of multiple organ systems including brain. The MT occurs over …

Menopause impacts human brain structure, connectivity, energy metabolism, and amyloid-beta deposition

L Mosconi, V Berti, J Dyke, E Schelbaum, S Jett… - SCIENTIFIC …, 2021 - flore.unifi.it
All women undergo the menopause transition (MT), a neuro-endocrinological process that
impacts aging trajectories of multiple organ systems including brain. The MT occurs over …

[PDF][PDF] Menopause impacts human brain structure, connectivity, energy metabolism, and amyloid‑beta deposition

L Mosconi, V Berti, J Dyke, E Schelbaum, S Jett… - Scientific …, 2021 - academia.edu
Results Participants. A total of 182 cognitively intact 40–65 year-old women were enrolled.
Nine participants were excluded due to neuropathological conditions encountered in the MR …

Menopause impacts human brain structure, connectivity, energy metabolism, and amyloid-beta deposition.

L Mosconi, V Berti, J Dyke, E Schelbaum… - Scientific …, 2021 - search.ebscohost.com
All women undergo the menopause transition (MT), a neuro-endocrinological process that
impacts aging trajectories of multiple organ systems including brain. The MT occurs over …

Menopause impacts human brain structure, connectivity, energy metabolism, and amyloid-beta deposition

L Mosconi, V Berti, J Dyke, E Schelbaum… - Scientific …, 2021 - pubmed.ncbi.nlm.nih.gov
All women undergo the menopause transition (MT), a neuro-endocrinological process that
impacts aging trajectories of multiple organ systems including brain. The MT occurs over …

Menopause impacts human brain structure, connectivity, energy metabolism, and amyloid-beta deposition.

L Mosconi, V Berti, J Dyke, E Schelbaum, S Jett… - Scientific …, 2021 - europepmc.org
All women undergo the menopause transition (MT), a neuro-endocrinological process that
impacts aging trajectories of multiple organ systems including brain. The MT occurs over …

Menopause impacts human brain structure, connectivity, energy metabolism, and amyloid-beta deposition

L Mosconi, V Berti, J Dyke, E Schelbaum… - Scientific …, 2021 - ui.adsabs.harvard.edu
All women undergo the menopause transition (MT), a neuro-endocrinological process that
impacts aging trajectories of multiple organ systems including brain. The MT occurs over …

Menopause Impacts Human Brain Structure, Connectivity, Energy Metabolism, and Amyloid-beta Deposition.

L Mosconi, V Berti, J Dyke, E Schelbaum, S Jett… - 2021 - researchsquare.com
All women undergo the menopause transition (MT) in their lifetime, yet little is known of how
this process impacts the human brain. The MT occurs in stages characterized by unique …