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1.
Neurologist ; 19(3): 89-91, 2015 Feb.
Article in English | MEDLINE | ID: mdl-25692517

ABSTRACT

BACKGROUND: The relationships between physical activity, cognition, and development of neurodegenerative diseases represent an area of intense research interest. Meta-analyses and prospective cohort studies show that greater levels of physical activity are associated with lower dementia risk. Most studies, however, depend on self-report data that are subject to recall and other biases. Obtaining objective and quantitative physical activity data could strengthen observational study validity. OBJECTIVE: To examine the association between objectively measured daytime activity and mild cognitive impairment (MCI) or Alzheimer disease (AD). METHODS: The objective was addressed through the development of a structured, critically appraised topic. We incorporated a clinical scenario, background information, a structured question, literature search strategy, critical appraisal, results, evidence summary, commentary, and bottom line conclusions. Participants included consultant and resident neurologists, clinical epidemiologists, a medical librarian, and behavioral neurology and neuropsychiatry content experts. RESULTS: We selected a prospective, single-center cohort study of 716 cognitively normal elderly participants followed for 3.5 years. Greater levels of physical activity, as measured using wrist actigraphy, were associated with a lower risk of incident MCI or AD (hazard ratio, 0.477; 95% confidence interval, 0.273-0.832). CONCLUSIONS: Objective measurement confirms that greater levels of physical activity are associated with decreased risk of a future diagnosis of MCI or AD. Further studies are needed to confirm the temporal association of exercise and future cognitive health and understand the relevant underlying biological mechanisms.


Subject(s)
Cognitive Dysfunction/epidemiology , Dementia/epidemiology , Motor Activity , Humans , Risk Factors
2.
Neurologist ; 18(6): 426-9, 2012 Nov.
Article in English | MEDLINE | ID: mdl-23114683

ABSTRACT

BACKGROUND: There is a well-known relationship between neurodegenerative disease, disrupted sleep, and cognition. Pathologic and imaging studies have shown that regions in the brain shown to regulate sleep and circadian rhythm are abnormal in Alzheimer disease. Most of these studies have been cross-sectional, and often look at patients already with dementia. This leaves uncertainty with regard to the temporal relationship of circadian disruption and cognitive decline. OBJECTIVE: To determine whether disrupted daytime activity and altered sleep patterns predict development of mild cognitive impairment (MCI) or dementia. METHODS: The objective was addressed through the development of a structured, critically-appraised topic. We incorporated a clinical scenario, background information, a structured question, literature search strategy, critical appraisal, results, evidence summary, commentary, and bottom line conclusions. Participants included consultant and resident neurologists, a medical librarian, and behavioral neurology and sleep medicine content experts. RESULTS: A prospective cohort study of 1282 cognitively normal women demonstrated that when peak circadian activity, as measured by wrist actigraphy, occurred later than average, there was an increased risk of MCI or dementia [odds ratio (OR), 1.83; 95% confidence interval (CI), 1.29-2.61]. Increased odds for dementia or MCI also existed for those with decreased circadian rhythm amplitude (OR, 1.57; 95% CI, 1.09-2.25) and robustness (OR, 1.57; 95% CI, 1.29-2.61). CONCLUSIONS: Disrupted circadian rhythm measures, including lower amplitude, a less robust rhythm, and delayed timing of peak activity on wrist actigraphy, were predictive of future development of MCI or dementia in cognitively normal women.


Subject(s)
Activities of Daily Living , Circadian Rhythm/physiology , Cognitive Dysfunction/diagnosis , Dementia/diagnosis , Sleep Disorders, Circadian Rhythm/complications , Aged , Cognitive Dysfunction/complications , Cognitive Dysfunction/physiopathology , Cohort Studies , Dementia/complications , Dementia/physiopathology , Disease Progression , Female , Humans , Predictive Value of Tests , Prognosis , Risk Factors , Sleep Disorders, Circadian Rhythm/physiopathology
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