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Comparing cortical signatures of atrophy between late-onset and autosomal dominant Alzheimer disease

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dc.contributor.author Allegri, Ricardo Francisco
dc.contributor.author Dincer, Aylin
dc.contributor.author Gordon, Brian A.
dc.contributor.author Hari-Raj, Amrita
dc.contributor.author Keefe, Sarah J.
dc.contributor.author Flores, Shaney
dc.contributor.author McKay, Nicole S.
dc.contributor.author Paulick, Angela M.
dc.contributor.author Shady Lewis, Kristine E.
dc.contributor.author Feldman, Rebecca L.
dc.contributor.author Hornbeck, Russ C.
dc.contributor.author Ances, Beau M.
dc.contributor.author Berman, Sarah B.
dc.contributor.author Brickman, Adam M.
dc.contributor.author Brooks, William S.
dc.contributor.author Cash, David M.
dc.contributor.author Chhatwal, Jasmeer P.
dc.contributor.author Farlow, Martin R.
dc.contributor.author La Fougère, Christian
dc.contributor.author Fox, Nick C.
dc.contributor.author Fulham, Michael J.
dc.contributor.author Jack Jr, Clifford R.
dc.contributor.author Joseph-Mathurin, Nelly
dc.contributor.author Karch, Celeste M.
dc.contributor.author Lee, Athene
dc.contributor.author Levin, Johannes
dc.contributor.author Masters, Colin L.
dc.contributor.author McDade, Eric
dc.contributor.author Oh, Hwamee
dc.contributor.author Perrin, Richard J.
dc.contributor.author Raji, Cyrus
dc.contributor.author Salloway, Stephen
dc.contributor.author Schofield, Peter R.
dc.contributor.author Su, Yi
dc.contributor.author Villemagne, Victor L.
dc.contributor.author Wang, Qing
dc.contributor.author Weiner, Michael W.
dc.contributor.author Xiong, Chengjie
dc.contributor.author Yakushev, Igor
dc.contributor.author Morris, John C.
dc.contributor.author Bateman, Randall J.
dc.contributor.author Benzinger, Tammie L.S.
dc.contributor.author Dominantly Inherited Alzheimer Network
dc.date.accessioned 2021-04-16T15:13:09Z
dc.date.available 2021-04-16T15:13:09Z
dc.date.issued 2020-11-05
dc.identifier.citation Dincer A, Gordon BA, Hari-Raj A, Keefe SJ, Flores S, McKay NS, Paulick AM, Shady Lewis KE, Feldman RL, Hornbeck RC, Allegri R, Ances BM, Berman SB, Brickman AM, Brooks WS, Cash DM, Chhatwal JP, Farlow MR, la Fougère C, Fox NC, Fulham MJ, Jack CR Jr, Joseph-Mathurin N, Karch CM, Lee A, Levin J, Masters CL, McDade EM, Oh H, Perrin RJ, Raji C, Salloway SP, Schofield PR, Su Y, Villemagne VL, Wang Q, Weiner MW, Xiong C, Yakushev I, Morris JC, Bateman RJ, L S Benzinger T; Dominantly Inherited Alzheimer Network DIAN. Comparing cortical signatures of atrophy between late-onset and autosomal dominant Alzheimer disease. Neuroimage Clin. 2020;28:102491. doi: 10.1016/j.nicl.2020.102491. Epub 2020 Nov 5. es_ES
dc.identifier.uri https://repositorio.fleni.org.ar/xmlui/handle/123456789/410
dc.identifier.uri https://doi.org/10.1016/j.nicl.2020.102491
dc.description.abstract Defining a signature of cortical regions of interest preferentially affected by Alzheimer disease (AD) pathology may offer improved sensitivity to early AD compared to hippocampal volume or mesial temporal lobe alone. Since late-onset Alzheimer disease (LOAD) participants tend to have age-related comorbidities, the younger-onset age in autosomal dominant AD (ADAD) may provide a more idealized model of cortical thinning in AD. To test this, the goals of this study were to compare the degree of overlap between the ADAD and LOAD cortical thinning maps and to evaluate the ability of the ADAD cortical signature regions to predict early pathological changes in cognitively normal individuals. We defined and analyzed the LOAD cortical maps of cortical thickness in 588 participants from the Knight Alzheimer Disease Research Center (Knight ADRC) and the ADAD cortical maps in 269 participants from the Dominantly Inherited Alzheimer Network (DIAN) observational study. Both cohorts were divided into three groups: cognitively normal controls (nADRC = 381; nDIAN = 145), preclinical (nADRC = 153; nDIAN = 76), and cognitively impaired (nADRC = 54; nDIAN = 48). Both cohorts underwent clinical assessments, 3T MRI, and amyloid PET imaging with either 11C-Pittsburgh compound B or 18F-florbetapir. To generate cortical signature maps of cortical thickness, we performed a vertex-wise analysis between the cognitively normal controls and impaired groups within each cohort using six increasingly conservative statistical thresholds to determine significance. The optimal cortical map among the six statistical thresholds was determined from a receiver operating characteristic analysis testing the performance of each map in discriminating between the cognitively normal controls and preclinical groups. We then performed within-cohort and cross-cohort (e.g. ADAD maps evaluated in the Knight ADRC cohort) analyses to examine the sensitivity of the optimal cortical signature maps to the amyloid levels using only the cognitively normal individuals (cognitively normal controls and preclinical groups) in comparison to hippocampal volume. We found the optimal cortical signature maps were sensitive to early increases in amyloid for the asymptomatic individuals within their respective cohorts and were significant beyond the inclusion of hippocampus volume, but the cortical signature maps performed poorly when analyzing across cohorts. These results suggest the cortical signature maps are a useful MRI biomarker of early AD-related neurodegeneration in preclinical individuals and the pattern of decline differs between LOAD and ADAD. es_ES
dc.language.iso eng es_ES
dc.publisher Elsevier es_ES
dc.rights info:eu-repo/semantics/openAccess
dc.rights.uri https://creativecommons.org/licenses/by/2.5/ar/
dc.subject Alzheimer Disease es_ES
dc.subject Enfermedad de Alzheimer es_ES
dc.title Comparing cortical signatures of atrophy between late-onset and autosomal dominant Alzheimer disease es_ES
dc.type info:eu-repo/semantics/article es_ES
dc.type info:eu-repo/semantics/publishedVersion
dc.description.fil Fil: Allegri, Ricardo Francisco. Fleni. Departamento de Neurología. Servicio de Neurología Cognitiva, Neuropsicología y Neuropsiquiatría; Argentina.
dc.description.fil Fil: Dincer, Aylin. Washington University School of Medicine. Department of Radiology, Department of Neurology, Department of Psychiatry, Department of Pathology and Immunology, Division of Biostatistics; Estados Unidos.
dc.description.fil Fil: Gordon, Brian A. Washington University School of Medicine. Department of Radiology, Department of Neurology, Department of Psychiatry, Department of Pathology and Immunology, Division of Biostatistics; Estados Unidos.
dc.description.fil Fil: Hari-Raj, Amrita.The Ohio State University College of Medicine; Estados Unidos.
dc.description.fil Fil: Keefe, Sarah J. Washington University School of Medicine. Department of Radiology, Department of Neurology, Department of Psychiatry, Department of Pathology and Immunology, Division of Biostatistics; Estados Unidos.
dc.description.fil Fil: Flores, Shaney. Washington University School of Medicine. Department of Radiology, Department of Neurology, Department of Psychiatry, Department of Pathology and Immunology, Division of Biostatistics; Estados Unidos.
dc.description.fil Fil: McKay, Nicole S. Washington University School of Medicine. Department of Radiology, Department of Neurology, Department of Psychiatry, Department of Pathology and Immunology, Division of Biostatistics; Estados Unidos.
dc.description.fil Fil: Paulick, Angela M. Washington University School of Medicine. Department of Radiology, Department of Neurology, Department of Psychiatry, Department of Pathology and Immunology, Division of Biostatistics; Estados Unidos.
dc.description.fil Fil: Feldman, Rebecca L. Washington University School of Medicine. Department of Radiology, Department of Neurology, Department of Psychiatry, Department of Pathology and Immunology, Division of Biostatistics; Estados Unidos.
dc.description.fil Fil: Shady Lewis, Kristine E. University of Kentucky College of Medicine. Sanders Brown Center on Aging & Alzheimer's; Estados Unidos.
dc.description.fil Fil: Hornbeck, Russ C. Washington University School of Medicine. Department of Radiology, Department of Neurology, Department of Psychiatry, Department of Pathology and Immunology, Division of Biostatistics; Estados Unidos.
dc.description.fil Fil: Ances, Beau M. Washington University School of Medicine. Department of Radiology, Department of Neurology, Department of Psychiatry, Department of Pathology and Immunology, Division of Biostatistics; Estados Unidos.
dc.description.fil Fil: Berman, Sarah B. University of Pittsburgh School of Medicine. Department of Neurology and Clinical & Translational Science; Estados Unidos.
dc.description.fil Fil: Brickman, Adam M. Columbia University. College of Physicians and Surgeons. Taub Institute for Research on Alzheimer's Disease and the Aging Brain and Department of Neurology; Estados Unidos.
dc.description.fil Fil: Brooks, William S. Neuroscience Research Australiay; Australia. University of New South Wales. Prince of Wales Clinical School; Australia.
dc.description.fil Fil: Cash, David M. UCL Queen Square Institute of Neurology. Dementia Research Centre and UK Dementia Research Institute; Reino Unido.
dc.description.fil Fil: Chhatwal, Jasmeer P. Harvard Medical School. Massachusetts General Hospital. Department of Neurology; Estados Unidos.
dc.description.fil Fil: Farlow, Martin R. Indiana University School of Medicine. Department of Radiology and Imaging Science. Department of Neurology; Estados Unidos.
dc.description.fil Fil: La Fougère, Christian. German Center for Neurodegenerative Diseases (DZNE); Alemania. University Hospital of Tübingen. Department of Nuclear Medicine and Clinical Molecular Imaging; Alemania.
dc.description.fil Fil: Fox, Nick C. UCL Queen Square Institute of Neurology. Dementia Research Centre and UK Dementia Research Institute; Reino Unido.
dc.relation.ispartofVOLUME 28
dc.relation.ispartofPAGINATION 102491
dc.relation.ispartofCOUNTRY Países Bajos
dc.relation.ispartofCITY Ámsterdam
dc.relation.ispartofISSN 2213-1582
dc.type.snrd info:ar-repo/semantics/artículo es_ES


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