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1. Peripheral inflammatory markers relate to central inflammation and survival in syndromes associated with frontotemporal lobar degeneration

2. Synaptic density affects clinical severity via network dysfunction in syndromes associated with frontotemporal lobar degeneration

3. Multi‐modal MR and synaptic PET changes in dementia with Lewy bodies

4. Apoe ε4 exacerbates age‐dependent decline of cortical microstructural changes in cognitively normal midlife individuals: the PREVENT‐Dementia and ALFA studies

5. Apoe ε4 exacerbates age‐dependent decline of cortical microstructural changes in cognitively normal midlife individuals: the PREVENT‐Dementia and ALFA studies

6. Functional connectivity moderates the impact of synaptic loss on behaviour in frontotemporal lobar degeneration syndromes

7. Peripheral and central markers of inflammation increased in frontotemporal dementia and related conditions

8. Peripheral and central markers of inflammation increased in frontotemporal dementia and related conditions

9. Structural correlates of survival in progressive supranuclear palsy

10. Locus Coeruleus Integrity Is Linked to Response Inhibition Deficits in Parkinson's Disease and Progressive Supranuclear Palsy

11. Longitudinal Synaptic Loss in Primary Tauopathies: An In Vivo [11 C] UCB‐J Positron Emission Tomography Study

12. Temporal lobe perceptual predictions for speech are instantiated in motor cortex and reconciled by inferior frontal cortex

13. Progression of atypical parkinsonian syndromes: PROSPECT-M-UK study implications for clinical trials

14. Microglial activation in the frontal cortex predicts cognitive decline in frontotemporal dementia

15. Synaptic loss in behavioural variant of frontotemporal dementia:an in vivo [ 11 C]UCB‐J PET study

16. Synaptic Loss in Frontotemporal Dementia Revealed by [11 C] UCB‐J Positron Emission Tomography

17. The neurophysiological effect of NMDA-R antagonism of frontotemporal lobar degeneration is conditional on individual GABA concentration

19. Locus Coeruleus Integrity from 7 T MRI Relates to Apathy and Cognition in Parkinsonian Disorders

20. Noradrenergic deficits contribute to apathy in Parkinson’s disease through the precision of expected outcomes

21. The neurophysiological effect of NMDA-R antagonism of frontotemporal lobar degeneration is conditional on individual GABA concentration

23. Synaptic loss in behavioural variant frontotemporal dementia revealed by [11C]UCB-J PET

26. Microglial activation and atrophy in frontal cortex predict executive dysfunction in frontotemporal dementia

27. Neuroinflammation in medial temporal regions predicts cognitive decline in dementia with Lewy bodies

28. In Vivo 18F-Flortaucipir PET Does Not Accurately Support the Staging of Progressive Supranuclear Palsy

29. Altered network stability in progressive supranuclear palsy

30. Molecular pathology and synaptic loss in primary tauopathies: an 18F-AV-1451 and 11C-UCB-J PET study

32. Noradrenergic deficits contribute to apathy in Parkinson’s disease through the precision of expected outcomes

33. Synaptic density in carriers of C9orf72 mutations: a [ 11 C]UCB‐J PET study

34. In vivo coupling of dendritic complexity with presynaptic density in primary tauopathies

35. Imaging tau burden in dementia with Lewy bodies using [18F]-AV1451 positron emission tomography

36. Locus Coeruleus Integrity from 7T MRI Relates to Apathy and Cognition in Parkinson’s Disease and Progressive Supranuclear Palsy

38. Proximity to dementia onset and multi-modal neuroimaging changes: The prevent-dementia study

39. Locus coeruleus integrity and the effect of atomoxetine on response inhibition in Parkinson’s disease

41. Molecular pathology and synaptic loss in primary tauopathies: [18F]AV-1451 and [11C]UCB-J PET study

45. In vivo coupling of dendritic complexity with presynaptic density in primary tauopathies

46. Multimodal imaging markers of tau, neuroinflammation and atrophy to predict clinical progression in progressive supranuclear palsy

48. Trajectory of apathy, cognition and neural correlates in the decades before symptoms in frontotemporal dementia

49. The prognostic role of microglia and tau PET in Alzheimer’s disease

50. GABA and glutamate deficits from frontotemporal lobar degeneration are associated with disinhibition

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