Microstructural integrity of the major nuclei of the thalamus in Parkinson's disease
Borlase, N.; Myall, D.; Melzer, T. R.; Livingston, L.; Watts, R.; Keenan, R. J.; MacAskill, M.; Anderson, T.; Dalrymple-Alford, J. C.
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BackgroundPrevious research has shown an association between thalamus and cognition in Parkinsons disease (PD). ObjectivesTo investigate the microstructural integrity of the nuclei of the thalamus and relationship with cognition. MethodsLevel II Movement Disorder Society Task Force Criteria characterised patients with Parkinsons disease as cognitively normal (PDN, n=51); with mild cognitive impairment (PD-MCI, n=16) or with dementia (PDD, n=15). Twenty-three healthy control subjects were included for comparison. A k-means clustering approach segmented the thalamus into regions representing nine major nuclei. Volume, fractional anisotropy and mean diffusivity of nuclei were compared between cognitive groups and the relationship with cognitive domain z-scores investigated using hierarchical Bayesian regression models. ResultsThere was an overall progressive increase in mean diffusivity as cognition deteriorated (PDN: 1.4 {micro}m2/s (95% uncertainty interval [0.2, 2.7]), PDMCI: 2.4 {micro}m2/s [0.8,4.0], PDD: 4.5 {micro}m2/s [2.8, 6.3]). The largest increase was in the lateral dorsal nucleus (PDN: 0.3 {micro}m2/s [-6.7, 7.2], PDMCI: 5.4 {micro}m2/s [-4.7, 16.1], PDD: 14.8 {micro}m2/s [5.0, 25.0]). Fractional anisotropy showed minimal change between cognitive groups (PDN: 0.001 [-0.005, 0,007], PDMCI: -0.005 [-0.013, 0.003], PDD: -0.005 [-0.014, 0.003]). Increase in mean diffusivity of the thalamus is associated with a global decline in cognition, the magnitude of the effect was greatest in lateral dorsal nucleus. Fractional anisotropy only showed evidence of a relationship with cognitive domain scores in the lateral dorsal nucleus. ConclusionsThe relationship between lateral dorsal nucleus integrity and cognitive changes is likely due to its primary connectivity with frontal and temporal regions.
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