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Lewis, M. M.

Publications and source records attributed to Lewis, M. M..

2 recordsLinked to original sources

IMPAIRED OLFACTORY NETWORK FUNCTIONAL CONNECTIVITY IN PARKINSON'S DISEASE: A NOVEL MARKER FOR DISEASE PROGRESSION

ObjectiveDetermine the neural basis of olfactory impairment in akinetic-rigid (PDAR) and tremor predominant (PDT) Parkinsons disease subtypes. MethodsWe combined resting-state fMRI (rs-fMRI) with seed based functional connectivity (FC) in order to delineate the olfactory networks functional connectivity (ON FC) between PDAR and PDT patients. We then contrasted their ON FC patterns with cognitively normal (CN) subjects. All three groups were closely matched in age, demographic variables, and adjusted for relative cognitive performance. Olfactory function was measured using the University of Pennsylvania Smell Identification Test (UPSIT). ResultsUPSIT scores were lower in akinetic-rigid vs tremor subtypes; ON FC values were lower in PDAR compared to PDT and CN, and followed the trend observed in UPSIT scores. UPSIT scores and ON FC values were significantly correlated, reflecting the effects of PD pathologies. ConclusionsThe results show that olfactory function differs between PDAR and PDT suggesting a correlation between PD-related motor symptoms and olfactory deficits. ON FC differences accounts for the impaired olfactory functions observed between PDAR and PDT. PDAR is known to have worse clinical outcomes and faster cognitive decline compared to PDT; therefore, PD-related olfactory dysfunction may serve as a novel metric for enhancing PD prognosis.

neuroscience

Decoupling of global brain activity and cerebrospinal fluid flow in Parkinson's cognitive decline

BackgroundDeposition and spreading of misfolded proteins (-synuclein and tau) have been linked to Parkinsons cognitive dysfunction. The glymphatic system may play an important role in the clearance of these toxic proteins via cerebrospinal fluid (CSF) flow through perivascular and interstitial spaces. Recent studies discovered that sleep-dependent global brain activity is coupled to CSF flow that may reflect glymphatic function. ObjectiveTo determine if the decoupling of brain activity-CSF flow is linked to Parkinsons cognitive dysfunction. MethodsFunctional and structural MRI data, clinical motor (Unified Parkinson's Disease Rating Scale), and cognitive (Montreal Cognitive Assessment, MoCA) scores were collected from 60 Parkinsons and 58 control subjects. Parkinsons patients were subgrouped into those with (MoCA < 26; N = 29) and without (MoCA [&ge;] 26; N = 31) mild cognitive impairment (MCI). The coupling strength between the resting-state global blood-oxygen-level-dependent signal (gBOLD) and associated CSF flow was quantified, compared among groups, and associated with clinical and structural measurements. ResultsgBOLD-CSF coupling decreased significantly (p < 0.006) in Parkinsons patients showing MCI, compared to those without MCI and controls. Reduced gBOLD-CSF coupling was associated with decreased MoCA scores that was present in Parkinsons patients (p = 0.005) but not in controls (p = 0.65). Weaker gBOLD-CSF coupling in Parkinsons patients also was associated with a thinner right entorhinal cortex (Spearmans correlation = - 0.36; p = 0.012), an early structural change often seen in Alzheimers. ConclusionsThe decoupling between global brain activity and associated CSF flow is related to Parkinsons cognitive impairment.

neuroscience