Blood-based proteomic signatures of spontaneous menopause: Implications for later-life brain aging and Alzheimer’s disease risk
Madeline Wood Alexander(Sunnybrook Health Science Centre), Kaitlin B Casaletto(University Memory and Aging Center), Emily G. Jacobs(University of California, Santa Barbara), Michelle R. Caunca(University of California, San Francisco), Ramiro Eduardo Rea Reyes(University of Wisconsin–Madison), Marisa Denkinger(Banner Sun Health Research Institute), Albert Pham(University of California, San Francisco), Nina Miolane(University of California, Santa Barbara), Rowan Saloner(University Memory and Aging Center), Matthew S Panizzon(University of California San Diego), Jennifer S Rabin(Sunnybrook Health Science Centre), Emily W Paolillo(University Memory and Aging Center), Nicholas J Ashton(Alzheimer's Association), Louisa Cornelis(University of California, Santa Barbara), Valentina Diaz(Universidad Católica de Santa Fe), Joel Kramer(University Memory and Aging Center), Sterling C. Johnson(University of Wisconsin–Madison), Julia Borger(University of California, San Francisco), Allesandra Iadipaolo(University of California, Santa Barbara), Caitlin Taylor(University of California, Santa Barbara), Laura Pritschet(Children's Hospital of Philadelphia)
Cited by 0
Related Papers
Marginally Significant Effects as Evidence for Hypotheses
|Psychological Science|2016|275
Functional reorganization of brain networks across the human menstrual cycle
|NeuroImage|2020|221
Neuroanatomical changes observed over the course of a human pregnancy
|Nature Neuroscience|2024|131
The scientific body of knowledge – Whose body does it serve? A spotlight on oral contraceptives and women’s health factors in neuroimaging
|Frontiers in Neuroendocrinology|2020|92