Simulating the progression of brain structural alterations in Parkinson’s disease

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Abstract

Considering brain structural alterations as neurodegenerative consequences of Parkinson's disease (PD), we sought to infer the progression of PD via the ordering of brain structural alterations from cross-sectional MRI observations. Having measured cortical thinning in gray matter (GM) regions and disintegrity in white matter (WM) regions as MRI markers of structural alterations for 130 patients with PD (69 ± 10 years, 72 men), stochastic simulation based on the probabilistic relationship between the brain regions was conducted to infer the ordering of structural alterations across all brain regions and the staging of structural alterations according to changes in clinical status. The ordering of structural alterations represented WM disintegrity tending to occur earlier than cortical thinning. The staging of structural alterations indicated structural alterations happening mostly before major disease complications such as postural instability and dementia. Later disease states predicted by the sequence of structural alterations were significantly related to more severe clinical symptoms. The relevance of the ordering of brain structural alterations to the severity of clinical symptoms suggests the clinical feasibility of predicting PD progression states.

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APA

Park, C. hyun, Shin, N. Y., Yoo, S. W., Seo, H., Yoon, U., Yoo, J. Y., … Kim, J. S. (2022). Simulating the progression of brain structural alterations in Parkinson’s disease. Npj Parkinson’s Disease, 8(1). https://doi.org/10.1038/s41531-022-00349-0

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