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Updated: Jan 22, 2026

Using Retinal Imaging to Study Dementia
Published on: November 6, 2017
Glymphatic system dysfunction as a predictor of cognitive decline and incident dementia
Chengqian Li1, Wen-Xin Li1, Zi-Yue Liu1
1Department of Neurology, State Key Laboratory of Complex Severe and Rare Diseases, Peking Union Medical College Hospital, Chinese Academy of Medical Science and Peking Union Medical College, Beijing, China.
None:
BackgroundCognitive decline and incident dementia in ageing populations have been linked to brain parenchymal injury and the ALPS index (ALPS-I).ObjectiveThis investigation aimed to elucidate whether the baseline ALPS-I could predict incident dementia and cognitive decline in this population.MethodsIn total, 973 dementia-free participants from the Shunyi Study (mean age, 57 years; 37% male) received MRI between 2013 and 2016 to quantify the ALPS-I. The longitudinal relationships between the ALPS-I and cognitive deterioration in various cognitive areas were evaluated via linear mixed models. Cox proportional hazard models were utilized to explore the link between the index and incident dementia. Mediation assessments were carried out to identify the potential mediating effects of brain parenchymal injury on the link between the ALPS-I and cognition.ResultsThe baseline ALPS-I predicted longitudinal changes in global cognition (Montreal Cognitive Assessment), language (verbal fluency test), visuospatial perception (block design subtest of Wechsler intelligence scale), and executive function (Trail Making Test). A lower score was markedly associated with a higher incident dementia risk. Mediation analysis revealed that fractional anisotropy mediated the associations between the ALPS-I and executive function (mediation effect: 21.9%) and visuospatial perception (mediation effect: 68.8%). The white matter hyperintensity fraction was found to mediate the link between the ALPS-I and global cognition (mediation effect: 55.0%).ConclusionsThis longitudinal evidence supports a link between the ALPS-I and cognitive degeneration. Furthermore, the link is mediated by subcortical parenchymal injury.
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