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1. KIBRA repairs synaptic plasticity and promotes resilience to tauopathy-related memory loss

2. Long non-coding RNA SNHG8 drives stress granule formation in tauopathies

3. TMEM106B regulates microglial proliferation and survival in response to demyelination

4. Loss of TDP-43 function contributes to genomic instability in amyotrophic lateral sclerosis

5. Patients with sporadic FTLD exhibit similar increases in lysosomal proteins and storage material as patients with FTD due to GRN mutations

6. Tuberous sclerosis complex is associated with a novel human tauopathy

7. Conserved gene signatures shared among MAPT mutations reveal defects in calcium signaling

8. Postmortem Human Dura Mater Cells Exhibit Phenotypic, Transcriptomic and Genetic Abnormalities that Impact their Use for Disease Modeling

10. Deficiency of the frontotemporal dementia gene GRN results in gangliosidosis

12. Elevated levels of extracellular vesicles in progranulin-deficient mice and FTD-GRN Patients.

13. Salience Network Atrophy Links Neuron Type-Specific Pathobiology to Loss of Empathy in Frontotemporal Dementia

14. Evidence of corticofugal tau spreading in patients with frontotemporal dementia

15. Impaired β-glucocerebrosidase activity and processing in frontotemporal dementia due to progranulin mutations.

16. Early neuronal accumulation of DNA double strand breaks in Alzheimer’s disease

17. Preferential tau aggregation in von Economo neurons and fork cells in frontotemporal lobar degeneration with specific MAPT variants

19. Neuropathological correlates of structural and functional imaging biomarkers in 4-repeat tauopathies

20. C9orf72-FTD/ALS pathogenesis: evidence from human neuropathological studies

21. Rare variants in the neuronal ceroid lipofuscinosis gene MFSD8 are candidate risk factors for frontotemporal dementia

22. Neurons selectively targeted in frontotemporal dementia reveal early stage TDP-43 pathobiology

23. Distinctive Structural and Molecular Features of Myelinated Inhibitory Axons in Human Neocortex

24. Von Economo Neurons and Fork Cells: A Neurochemical Signature Linked to Monoaminergic Function

25. Clinicopathological correlations in behavioural variant frontotemporal dementia

26. Linking tuberous sclerosis complex, excessive mTOR signaling, and age-related neurodegeneration: a new association between TSC1 mutation and frontotemporal dementia

27. Impaired prosaposin lysosomal trafficking in frontotemporal lobar degeneration due to progranulin mutations.

28. Structure-based design of nanobodies that inhibit seeding of Alzheimer’s patient–extracted tau fibrils

31. Loss of TDP-43 function contributes to genomic instability in amyotrophic lateral sclerosis.

32. KIBRA repairs synaptic plasticity and promotes resilience to tauopathy-related memory loss

33. Long non-coding RNASNHG8drives stress granule formation in tauopathies

34. Conserved gene signatures shared among MAPT mutations reveal defects in calcium signaling

35. Long non-coding RNA SNHG8drives stress granule formation in tauopathies

36. Tuberous sclerosis complex is associated with a novel human tauopathy

37. Progranulin deficiency results in reduced bis(monoacylglycero)phosphate (BMP) levels and gangliosidosis

38. A systematic comparison of fibroblasts derived from postmortem human dura mater versus dermal epithelium for neurodegenerative disease modeling

40. Salience network atrophy links neuron type-specific degeneration to loss of empathy in frontotemporal dementia

41. Evidence of corticofugal tau spreading in patients with frontotemporal dementia

42. Salience network atrophy links neuron type-specific pathobiology to loss of empathy in frontotemporal dementia

43. Neurons selectively targeted in frontotemporal dementia reveal early stage TDP-43 pathobiology

44. Rare variants in the neuronal ceroid lipofuscinosis gene MFSD8 are candidate risk factors for frontotemporal dementia

46. Cell loss in the motor and cingulate cortex correlates with symptomatology in Huntington's disease

47. Myelinated Inhibitory Axons in Human Neocortex

50. Deciphering Distinct Genetic Risk Factors for FTLD-TDP Pathological Subtypes via Whole-Genome Sequencing.

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