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Dynamic Digital Biomarkers of Motor and Cognitive Function in Parkinson's Disease
Published on: July 24, 2019
Profiling Parkinson's disease cognitive phenotypes via resting-state magnetoencephalography
Olivier B Simon1, Donald C Rojas2, Debashis Ghosh1
1Department of Biostatistics and Informatics, University of Colorado Denver, Aurora, Colorado.
Abstract:
Aberrant brain oscillations are a hallmark of Parkinson's disease (PD) pathophysiology and may be related to both motor and nonmotor symptoms. Mild cognitive impairment (MCI) affects many people with PD even at the time of diagnosis and conversion risks to PD dementia (PDD) are very high. Unfortunately, pharmacotherapies are not addressing cognitive symptoms in PD. Profiling PD cognitive phenotypes (e.g., MCI, PDD, etc.) may therefore help inform future treatments. Neurophysiological methods, such as magnetoencephalography (MEG), offer the advantage of observing oscillatory patterns, whose regional and temporal profiles may elucidate how cognitive changes relate to neural mechanisms. We conducted a resting-state MEG cross-sectional study of 89 persons with PD stratified into three phenotypic groups: normal cognition, MCI, and PDD, to identify brain regions and frequencies most associated with each cognitive profile. In addition, a neuropsychological battery was administered to assess each domain of cognition. Our data showed higher power in lower frequency bands (delta and theta) observed along with more severe cognitive impairment and associated with memory, language, attention, and global cognition. Of the total 119 brain parcels assessed during source analysis, widespread group differences were found in the beta band, with significant changes mostly occurring between the normal cognition and MCI groups. Moreover, bilateral frontal and left-hemispheric regions were particularly affected in the other frequencies as cognitive decline becomes more pronounced. Our results suggest that MCI and PDD may be qualitatively distinct cognitive phenotypes, and most dramatic changes seem to have happened when the PD brain shows mild cognitive decline.NEW & NOTEWORTHY Can we better stage cognitive decline in patients with Parkinson's disease (PD)? Here, we provide evidence that mild cognitive impairment, rather than being simply a milder form of dementia, may be a qualitatively distinct phase in its development. We suggest that the most dramatic neurophysiological changes may occur during the time the PD brain transitions from normal cognition to MCI, then compensatory changes further occur as the brain "switches" to a dementia state.
Insights
Parkinson's disease cognitive decline may involve distinct stages. Mild cognitive impairment represents a unique phase, with significant brain changes occurring as cognition transitions from normal to impaired.
Area of Science:
- Neuroscience
- Neurology
- Cognitive Science
Background:
- Aberrant brain oscillations are characteristic of Parkinson's disease (PD) pathophysiology, potentially linking to motor and non-motor symptoms.
- Mild cognitive impairment (MCI) is prevalent in PD patients at diagnosis, with a high risk of progressing to PD dementia (PDD).
- Current pharmacotherapies do not effectively address cognitive symptoms in PD, highlighting the need for better cognitive phenotyping.
Purpose of the Study:
- To identify brain regions and oscillatory frequencies associated with distinct cognitive profiles in Parkinson's disease.
- To investigate neurophysiological differences between normal cognition, MCI, and PDD using magnetoencephalography (MEG).
- To inform the development of future treatments by profiling PD cognitive phenotypes.
Main Methods:
- A cross-sectional study utilizing resting-state magnetoencephalography (MEG) on 89 individuals with Parkinson's disease.
- Participants were stratified into three cognitive groups: normal cognition, mild cognitive impairment (MCI), and PD dementia (PDD).
- A comprehensive neuropsychological battery assessed cognitive domains, complemented by MEG source analysis of brain activity.
Main Results:
- Increased power in delta and theta frequency bands correlated with greater cognitive impairment and poorer performance in memory, language, attention, and global cognition.
- Widespread differences in the beta frequency band were observed across 119 brain parcels, particularly between normal cognition and MCI groups.
- Bilateral frontal and left-hemispheric regions showed pronounced changes in other frequency bands as cognitive decline progressed.
Conclusions:
- Mild cognitive impairment (MCI) and PD dementia (PDD) may represent qualitatively distinct cognitive phenotypes in Parkinson's disease.
- The transition from normal cognition to MCI appears to involve the most significant neurophysiological alterations.
- Compensatory mechanisms may emerge as the brain shifts towards a dementia state, suggesting MCI is a critical, distinct phase.
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