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Comment Article

Introductory editorial to the special issue: Alzheimer’s disease biomarkers and cognitive functioning along the Alzheimer’s continuum

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Pages 861-865 | Received 31 Jul 2023, Accepted 02 Aug 2023, Published online: 26 Aug 2023

References

  • 2023 Alzheimer’s Disease Facts and Figures. (2023). Alzheimer’s & dementia: The Journal of the Alzheimer’s Association, 19(4), 1598–1695. https://doi.org/10.1002/alz.13016
  • Euler, M. J., Duff, K., King, J. B., & Hoffman, J. M. (2022). Recall and recognition subtests of the repeatable battery for the assessment of neuropsychological status and their relationship to biomarkers of Alzheimer’s disease. Neuropsychology, Development, and Cognition: Section B, Aging, Neuropsychology and Cognition, 1–18. https://doi.org/10.1080/13825585.2022.2124229
  • Ferman, T. J., Smith, G. E., Kantarci, K., Boeve, B. F., Pankratz, V. S., Dickson, D. W., Graff-Radford, N. R., Wszolek, Z., Van Gerpen, J., Uitti, R., Pedraza, O., Murray, M. E., Aakre, J., Parisi, J., Knopman, D. S., & Petersen, R. C. (2013). Nonamnestic mild cognitive impairment progresses to dementia with Lewy bodies. Neurology, 81(23), 2032–2038. https://doi.org/10.1212/01.wnl.0000436942.55281.47
  • Goldstein, F. C., Okafor, M., Yang, Z., Thomas, T., Sale, S., & Ihab, H. (2023). Subjective cognitive complaints in White and African American older adults: associations with demographic, mood, cognitive, and neuroimaging features, 21, 1–14. https://doi.org/10.1080/13825585.2023.2249181
  • Hammers, D. B., Kostadinova, R. V., Spencer, R. J., Ikanga, J. N., Unverzagt, F. W., Risacher, S. L., & Apostolova, L. G. (2022). Sensitivity of memory subtests and learning slopes from the ADAS-Cog to distinguish along the continuum of the NIA-AA Research framework for Alzheimer’s disease. Neuropsychology, Development, and Cognition: Section B, Aging, Neuropsychology and Cognition, 1–19. https://doi.org/10.1080/13825585.2022.2120957
  • Jack, C. R., Jr., Bennett, D. A., Blennow, K., Carrillo, M. C., Dunn, B., Haeberlein, S. B., Holtzman, D. M., Jagust, W., Jessen, F., Karlawish, J., Liu, E., Molinuevo, J. L., Montine, T., Phelps, C., Rankin, K. P., Rowe, C. C., Scheltens, P., Siemers, E., Snyder, H. M., & Sperling, R. (2018). NIA-AA Research framework: Toward a biological definition of Alzheimer’s disease. Alzheimer’s & Dementia: The Journal of the Alzheimer’s Association, 14(4), 535–562. https://doi.org/10.1016/j.jalz.2018.02.018
  • Jack, C. R., Jr., Knopman, D. S., Weigand, S. D., Wiste, H. J., Vemuri, P., Lowe, V., Kantarci, K., Gunter, J. L., Senjem, M. L., Ivnik, R. J., Roberts, R. O., Rocca, W. A., Boeve, B. F., Petersen, R. C. (2012). An operational approach to National Institute on Aging-Alzheimer’s Association criteria for preclinical Alzheimer disease. Annals of Neurology, 71(6), 765–775. https://doi.org/10.1002/ana.22628
  • Keith, C. M., Haut, M. W., Wilhelmsen, K., Mehta, R. I., Miller, M., Navia, R. O., Ward, M., Lindberg, K., Coleman, M., McCuddy, W. T., Deib, G., Giolzetti, A., & D’Haese, P.-F. (2022). Frontal and temporal lobe correlates of verbal learning and memory in aMCI and suspected Alzheimer’s disease dementia. Neuropsychology, Development, and Cognition: Section B, Aging, Neuropsychology and Cognition, 1–17. https://doi.org/10.1080/13825585.2022.2144618
  • Petersen, R. C. (2004). Mild cognitive impairment as a diagnostic entity. Journal of Internal Medicine, 256(3), 183–194. https://doi.org/10.1111/j.1365-2796.2004.01388.x
  • Petersen, R. C., Smith, G. E., Waring, S. C., Ivnik, R. J., Tangalos, E. G., & Kokmen, E. (1999). Mild cognitive impairment: Clinical characterization and outcome. Archives of Neurology, 56(3), 303–308. https://doi.org/10.1001/archneur.56.3.303
  • Pommy, J., Conant, L., Butts, A. M., Nencka, A., Wang, Y., Franczak, M., & Glass-Umfleet, L. (2023). A graph theoretic approach to neurodegeneration: Five data-driven neuropsychological subtypes in mild cognitive impairment. Neuropsychology, Development, and Cognition: Section B, Aging, Neuropsychology and Cognition, 1–20. https://doi.org/10.1080/13825585.2022.2163973
  • Reiter, K., Butts, A. M., Janecek, J. K., Correro, A. N., Nencka, A., Agarwal, M., Franczak, M., & Glass Umfleet, L. (2022). Relationship between cognitive reserve, brain volume, and neuropsychological performance in amnestic and nonamnestic MCI. Neuropsychology, Development, and Cognition: Section B, Aging, Neuropsychology and Cognition, 1–17. https://doi.org/10.1080/13825585.2022.2161462

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