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

dc.contributor.authorHammers, Dustin B.
dc.contributor.authorKostadinova, Ralitsa V.
dc.contributor.authorSpencer, Robert J.
dc.contributor.authorIkanga, Jean N.
dc.contributor.authorUnverzagt, Frederick W.
dc.contributor.authorRisacher, Shannon L.
dc.contributor.authorApostolova, Liana G.
dc.contributor.authorAlzheimer’s Disease Neuroimaging Initiative
dc.contributor.departmentNeurology, School of Medicine
dc.date.accessioned2024-10-29T08:06:44Z
dc.date.available2024-10-29T08:06:44Z
dc.date.issued2023
dc.description.abstractDespite extensive use of the Alzheimer's Disease (AD) Assessment Scale - Cognitive Subscale (ADAS-Cog) in AD research, exploration of memory subtests or process scores from the measure has been limited. The current study sought to establish validity for the ADAS-Cog Word Recall Immediate and Delayed Memory subtests and learning slope scores by showing that they are sensitive to AD biomarker status. Word Recall subtest and learning slope scores were calculated for 441 participants from the Alzheimer's Disease Neuroimaging Initiative (aged 55 to 90). All participants were categorized using the NIA-AA Research Framework - based on PET-imaging of β-amyloid (A) and tau (T) deposition - as Normal AD Biomarkers (A-T-), Alzheimer's Pathologic Change (A + T-), or Alzheimer's disease (A + T+). Memory subtest and learning slope performances were compared between biomarker status groups, and with regard to how well they discriminated samples with (A + T+) and without (A-T-) biomarkers. Lower Word Recall memory subtest scores - and scores for a particular learning slope calculation, the Learning Ratio - were observed for the AD (A + T+) group than the other biomarker groups. Memory subtest and Learning Ratio scores further displayed fair to good receiver operator characteristics when differentiating those with and without AD biomarkers. When comparing across learning slopes, the Learning Ratio metric consistently outperformed others. ADAS-Cog memory subtests and the Learning Ratio score are sensitive to AD biomarker status along the continuum of the NIA-AA Research Framework, and the results offer criterion validity for use of these subtests and process scores as unique markers of memory capacity.
dc.eprint.versionAuthor's manuscript
dc.identifier.citationHammers DB, Kostadinova RV, Spencer RJ, et al. 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. Neuropsychol Dev Cogn B Aging Neuropsychol Cogn. 2023;30(6):866-884. doi:10.1080/13825585.2022.2120957
dc.identifier.urihttps://hdl.handle.net/1805/44283
dc.language.isoen_US
dc.publisherTaylor & Francis
dc.relation.isversionof10.1080/13825585.2022.2120957
dc.relation.journalNeuropsychology, Development, and Cognition: Section B, Aging, Neuropsychology and Cognition
dc.rightsPublisher Policy
dc.sourcePMC
dc.subjectLearning
dc.subjectMemory
dc.subjectAlzheimer’s disease
dc.subjectMild cognitive impairment
dc.subjectTau
dc.subjectAmyloid
dc.subjectADAS-Cog
dc.titleSensitivity 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
dc.typeArticle
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