scholarly journals Cholinergic white matter pathways in dementia with Lewy bodies and Alzheimer’s disease

Brain ◽  
2021 ◽  
Author(s):  
Julia Schumacher ◽  
Nicola J Ray ◽  
Calum A Hamilton ◽  
Paul C Donaghy ◽  
Michael Firbank ◽  
...  

Abstract Dementia with Lewy bodies and Alzheimer’s disease show early degeneration of the cholinergic nucleus basalis of Meynert. However, how white matter projections between the nucleus basalis of Meynert and the cortex are altered in neurodegenerative disease is unknown. Tractography of white matter pathways originating from the nucleus basalis of Meynert was performed using diffusion-weighted imaging in 46 Alzheimer’s disease dementia, 48 dementia with Lewy bodies, 35 mild cognitive impairment with Alzheimer’s disease, 38 mild cognitive impairment with Lewy bodies, and 71 controls. Mean diffusivity of the resulting pathways was compared between groups and related to cognition, attention, functional EEG changes, and dementia conversion in the mild cognitive impairment groups. We successfully tracked a medial and a lateral pathway from the nucleus basalis of Meynert. Mean diffusivity of the lateral pathway was higher in both dementia and mild cognitive impairment groups than controls (all P < 0.03). In the patient groups, increased mean diffusivity of this pathway was related to more impaired global cognition (β=-0.22, P = 0.06) and worse performance on an attention task (β = 0.30, P = 0.03). In patients with mild cognitive impairment, loss of integrity of both nucleus basalis of Meynert pathways was associated with increased risk of dementia progression (hazard ratio [95% confidence interval], medial pathway: 2.51 [1.24–5.09]; lateral pathway: 2.54 [1.24–5.19]). Nucleus basalis of Meynert volume was reduced in all clinical groups compared to controls (all P < 0.001), but contributed less strongly to cognitive impairment and was not associated with attention or dementia conversion. EEG slowing in the patient groups as assessed by a decrease in dominant frequency was associated with smaller nucleus basalis of Meynert volumes (β = 0.22, P = 0.02) and increased mean diffusivity of the lateral pathway (β=-0.47, P = 0.003). We show that degeneration of the cholinergic nucleus basalis of Meynert in Alzheimer’s disease and dementia with Lewy bodies is accompanied by an early reduction in integrity of white matter projections that originate from this structure. This is more strongly associated with cognition and attention than the volume of the nucleus basalis of Meynert itself and might be an early indicator of increased risk of dementia conversion in people with mild cognitive impairment.

2017 ◽  
Vol 29 (4) ◽  
pp. 545-555 ◽  
Author(s):  
Elijah Mak ◽  
Silvy Gabel ◽  
Li Su ◽  
Guy B. Williams ◽  
Robert Arnold ◽  
...  

ABSTRACTBackground:Volumetric atrophy and microstructural alterations in diffusion tensor imaging (DTI) measures of the hippocampus have been reported in people with Alzheimer's disease (AD) and mild cognitive impairment (MCI). However, no study to date has jointly investigated concomitant microstructural and volumetric changes of the hippocampus in dementia with Lewy bodies (DLB).Methods:A total of 84 subjects (23 MCI, 17 DLB, 14 AD, and 30 healthy controls) were recruited for a multi-modal imaging (3T MRI and DTI) study that included neuropsychological evaluation. Freesurfer was used to segment the total hippocampus and delineate its subfields. The hippocampal segmentations were co-registered to the mean diffusivity (MD) and fractional anisotropy (FA) maps obtained from the DTI images.Results:Both AD and MCI groups showed significantly smaller hippocampal volumes compared to DLB and controls, predominantly in the CA1 and subiculum subfields. Compared to controls, hippocampal MD was elevated in AD, but not in MCI. DLB was characterized by both volumetric and microstructural preservation of the hippocampus. In MCI, higher hippocampal MD was associated with greater atrophy of the hippocampus and CA1 region. Hippocampal volume was a stronger predictor of memory scores compared to MD within the MCI group.Conclusions:Through a multi-modal integration, we report novel evidence that the hippocampus in DLB is characterized by both macrostructural and microstructural preservation. Contrary to recent suggestions, our findings do not support the view that DTI measurements of the hippocampus are superior to volumetric changes in characterizing group differences, particularly between MCI and controls.


2014 ◽  
Vol 25 (2) ◽  
pp. 269-274 ◽  
Author(s):  
Bing Zhang ◽  
Tanis J. Ferman ◽  
Bradley F. Boeve ◽  
Glenn E. Smith ◽  
Mandie Maroney-Smith ◽  
...  

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