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1. Astrocyte transcriptomic changes along the spatiotemporal progression of Alzheimer’s disease

2. Landscape of brain myeloid cell transcriptome along the spatiotemporal progression of Alzheimer’s disease reveals distinct sequential responses to Aβ and tau

3. Microglia states and nomenclature: A field at its crossroads

7. Age-related myelin degradation burdens the clearance function of microglia during aging

10. Astrocyte transcriptomic changes along the spatiotemporal progression of Alzheimer’s disease

13. Distinct transcriptomic responses to Aβ plaques, neurofibrillary tangles, and APOE in Alzheimer's disease

15. Distinct transcriptomic responses to Aβ plaques, neurofibrillary tangles, and APOE in Alzheimer's disease.

17. Endothelial Cells are Heterogeneous in Different Brain Regions and are Dramatically Altered in Alzheimer’s Disease

21. Distinct Transcriptomic Responses to A beta plaques, Neurofibrillary Tangles, and APOE in Alzheimer's Disease

23. Endothelial Cells are Heterogeneous in Different Brain Regions and are Dramatically Altered in Alzheimer’s Disease

24. Astrocyte transcriptomic changes along the spatiotemporal progression of Alzheimer’s disease

25. A brain atlas of astrocyte transcriptomics unveils complex states and responses to Alzheimer’s disease neuropathology

26. Transcriptomic Differences in Endothelial Cells Across Five Brain Regions in Normal Aging and Alzheimer's Disease

27. Tau pathology vulnerable neuronal subpopulation in Alzheimer’s disease

28. Priming of microglia in a DNA-repair deficient model of accelerated aging

32. Microglia states and nomenclature: A field at its crossroads.

33. Large eQTL meta-analysis reveals differing patterns between cerebral cortical and cerebellar brain regions

34. Microglia states and nomenclature: A field at its crossroads.

35. USP18 lack in microglia causes destructive interferonopathy of the mouse brain

36. Neurodegeneration and neuroinflammation are linked, but independent of alpha‐synuclein inclusions, in a seeding/spreading mouse model of Parkinson's disease

37. Defining Microglial States and Nomenclature: A Roadmap to 2030

47. Neuronal 'On' and 'Off' signals control microglia

48. Profiling Microglia From Alzheimer’s Disease Donors and Non-demented Elderly in Acute Human Postmortem Cortical Tissue

49. Profiling Microglia From Alzheimer’s Disease Donors and Non-demented Elderly in Acute Human Postmortem Cortical Tissue

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