Cargando…

Amyloid-PET imaging offers small improvements in predictions of future cognitive trajectories

BACKGROUND: Amyloid [Formula: see text] (A [Formula: see text]) is thought to initiate a cascade of pathology culminating in Alzheimer’s disease-related cognitive decline. A [Formula: see text] accumulation in brain tissues may begin one to two decades prior to clinical diagnosis of Alzheimer’s dise...

Descripción completa

Detalles Bibliográficos
Autores principales: Ackley, Sarah F., Hayes-Larson, Eleanor, Brenowitz, Willa D., Swinnerton, Kaitlin, Mungas, Dan, Fletcher, Evan, Singh, Baljeet, Whitmer, Rachel A., DeCarli, Charles, Maria Glymour, M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8233225/
https://www.ncbi.nlm.nih.gov/pubmed/34153689
http://dx.doi.org/10.1016/j.nicl.2021.102713
_version_ 1783713804210667520
author Ackley, Sarah F.
Hayes-Larson, Eleanor
Brenowitz, Willa D.
Swinnerton, Kaitlin
Mungas, Dan
Fletcher, Evan
Singh, Baljeet
Whitmer, Rachel A.
DeCarli, Charles
Maria Glymour, M.
author_facet Ackley, Sarah F.
Hayes-Larson, Eleanor
Brenowitz, Willa D.
Swinnerton, Kaitlin
Mungas, Dan
Fletcher, Evan
Singh, Baljeet
Whitmer, Rachel A.
DeCarli, Charles
Maria Glymour, M.
author_sort Ackley, Sarah F.
collection PubMed
description BACKGROUND: Amyloid [Formula: see text] (A [Formula: see text]) is thought to initiate a cascade of pathology culminating in Alzheimer’s disease-related cognitive decline. A [Formula: see text] accumulation in brain tissues may begin one to two decades prior to clinical diagnosis of Alzheimer’s disease. Prior studies have demonstrated that Aβ detected in vivo with positron emission tomography with amyloid ligands (amyloid-PET) predicts contemporaneously measured cognition and future cognitive trajectories. Prior studies have not evaluated the added value of A [Formula: see text] measures in predicting future cognition when repeated past cognitive measures are available. We evaluated the extent to which amyloid-PET improves prediction of future cognitive changes over and above predictions based only on sociodemographics and past cognitive measures. METHODS: We used data from participants in the University of California Davis Alzheimer’s Disease Research cohort who were cognitively normal at baseline, participated in amyloid-PET imaging, and completed at least three cognitive assessments prior to amyloid-PET imaging ([Formula: see text]  = 132 for memory and [Formula: see text]  = 135 for executive function). We used sociodemographic and cognitive measures taken prior to amyloid-PET imaging to predict cognitive trajectory after amyloid-PET imaging and assessed whether measures of amyloid burden improved predictions of subsequent cognitive change. Improvements in prediction were characterized as percent reduction in the mean squared error (MSE) in predicted cognition post amyloid-PET and increase in percent variance explained. RESULTS: The base model using only sociodemographics and past cognitive performance explained the majority of variance in both predicted memory measures (55.6%) and executive function measures (74.5%) following amyloid-PET. Adding amyloid positivity to the model reduced the MSE for memory by 0.2%, 95% CI: (0%, 2.6%), p = 0.48 and for executive function by 3.4%, 95% CI: (0.6%, 10.2%), p = 0.002. This corresponded to an increase in the percent variance explained of 0.1%, 95% CI: (0%, 1.2%) for memory and 0.9%, 95% CI: (0.1%, 2.8%) for executive function. Similar results were obtained using a continuous measure of amyloid burden. CONCLUSION: In this cohort, the addition of amyloid burden slightly improved predictions of executive function compared to models based only on past cognitive assessments and sociodemographics. When repeated cognitive assessments are available, the additional utility of amyloid-PET in predicting future cognitive impairment may be limited.
format Online
Article
Text
id pubmed-8233225
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-82332252021-06-29 Amyloid-PET imaging offers small improvements in predictions of future cognitive trajectories Ackley, Sarah F. Hayes-Larson, Eleanor Brenowitz, Willa D. Swinnerton, Kaitlin Mungas, Dan Fletcher, Evan Singh, Baljeet Whitmer, Rachel A. DeCarli, Charles Maria Glymour, M. Neuroimage Clin Regular Article BACKGROUND: Amyloid [Formula: see text] (A [Formula: see text]) is thought to initiate a cascade of pathology culminating in Alzheimer’s disease-related cognitive decline. A [Formula: see text] accumulation in brain tissues may begin one to two decades prior to clinical diagnosis of Alzheimer’s disease. Prior studies have demonstrated that Aβ detected in vivo with positron emission tomography with amyloid ligands (amyloid-PET) predicts contemporaneously measured cognition and future cognitive trajectories. Prior studies have not evaluated the added value of A [Formula: see text] measures in predicting future cognition when repeated past cognitive measures are available. We evaluated the extent to which amyloid-PET improves prediction of future cognitive changes over and above predictions based only on sociodemographics and past cognitive measures. METHODS: We used data from participants in the University of California Davis Alzheimer’s Disease Research cohort who were cognitively normal at baseline, participated in amyloid-PET imaging, and completed at least three cognitive assessments prior to amyloid-PET imaging ([Formula: see text]  = 132 for memory and [Formula: see text]  = 135 for executive function). We used sociodemographic and cognitive measures taken prior to amyloid-PET imaging to predict cognitive trajectory after amyloid-PET imaging and assessed whether measures of amyloid burden improved predictions of subsequent cognitive change. Improvements in prediction were characterized as percent reduction in the mean squared error (MSE) in predicted cognition post amyloid-PET and increase in percent variance explained. RESULTS: The base model using only sociodemographics and past cognitive performance explained the majority of variance in both predicted memory measures (55.6%) and executive function measures (74.5%) following amyloid-PET. Adding amyloid positivity to the model reduced the MSE for memory by 0.2%, 95% CI: (0%, 2.6%), p = 0.48 and for executive function by 3.4%, 95% CI: (0.6%, 10.2%), p = 0.002. This corresponded to an increase in the percent variance explained of 0.1%, 95% CI: (0%, 1.2%) for memory and 0.9%, 95% CI: (0.1%, 2.8%) for executive function. Similar results were obtained using a continuous measure of amyloid burden. CONCLUSION: In this cohort, the addition of amyloid burden slightly improved predictions of executive function compared to models based only on past cognitive assessments and sociodemographics. When repeated cognitive assessments are available, the additional utility of amyloid-PET in predicting future cognitive impairment may be limited. Elsevier 2021-06-08 /pmc/articles/PMC8233225/ /pubmed/34153689 http://dx.doi.org/10.1016/j.nicl.2021.102713 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Regular Article
Ackley, Sarah F.
Hayes-Larson, Eleanor
Brenowitz, Willa D.
Swinnerton, Kaitlin
Mungas, Dan
Fletcher, Evan
Singh, Baljeet
Whitmer, Rachel A.
DeCarli, Charles
Maria Glymour, M.
Amyloid-PET imaging offers small improvements in predictions of future cognitive trajectories
title Amyloid-PET imaging offers small improvements in predictions of future cognitive trajectories
title_full Amyloid-PET imaging offers small improvements in predictions of future cognitive trajectories
title_fullStr Amyloid-PET imaging offers small improvements in predictions of future cognitive trajectories
title_full_unstemmed Amyloid-PET imaging offers small improvements in predictions of future cognitive trajectories
title_short Amyloid-PET imaging offers small improvements in predictions of future cognitive trajectories
title_sort amyloid-pet imaging offers small improvements in predictions of future cognitive trajectories
topic Regular Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8233225/
https://www.ncbi.nlm.nih.gov/pubmed/34153689
http://dx.doi.org/10.1016/j.nicl.2021.102713
work_keys_str_mv AT ackleysarahf amyloidpetimagingofferssmallimprovementsinpredictionsoffuturecognitivetrajectories
AT hayeslarsoneleanor amyloidpetimagingofferssmallimprovementsinpredictionsoffuturecognitivetrajectories
AT brenowitzwillad amyloidpetimagingofferssmallimprovementsinpredictionsoffuturecognitivetrajectories
AT swinnertonkaitlin amyloidpetimagingofferssmallimprovementsinpredictionsoffuturecognitivetrajectories
AT mungasdan amyloidpetimagingofferssmallimprovementsinpredictionsoffuturecognitivetrajectories
AT fletcherevan amyloidpetimagingofferssmallimprovementsinpredictionsoffuturecognitivetrajectories
AT singhbaljeet amyloidpetimagingofferssmallimprovementsinpredictionsoffuturecognitivetrajectories
AT whitmerrachela amyloidpetimagingofferssmallimprovementsinpredictionsoffuturecognitivetrajectories
AT decarlicharles amyloidpetimagingofferssmallimprovementsinpredictionsoffuturecognitivetrajectories
AT mariaglymourm amyloidpetimagingofferssmallimprovementsinpredictionsoffuturecognitivetrajectories