20 results on '"Lu, Ashley"'
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2. Spatial Transcriptomics and In Situ Sequencing to Study Alzheimer’s Disease
3. Deteriorate
4. Novel Alzheimer risk genes determine the microglia response to amyloid‐β but not to TAU pathology
5. Early alterations in the MCH system link aberrant neuronal activity and sleep disturbances in a mouse model of Alzheimer’s disease
6. Deregulation of neuronal miRNAs induced by amyloid-β or TAU pathology
7. Abstract 3613: CD28 signaling controls maintenance and differentiation of PD1+CD8 T cells during chronic antigen stimulation
8. CD28 signaling strength regulates the cell fate of TCF-1+ PD-1+ CD8 T cells
9. Melanin Concentrating Hormone- and sleep-dependent synaptic downscaling is impaired in Alzheimer’s Disease
10. A PCR diagnostic assay for rapid detection of plant pathogenic pseudomonads
11. Spatial and temporal transcriptomics reveal microglia-astroglia crosstalk in the amyloid-β plaque cell niche of Alzheimer’s disease
12. Novel Alzheimer risk genes determine the microglia response to amyloid-β but not to TAU pathology
13. Investigating the Role of the BRCA2 C‐Terminus in Homologous Recombination
14. Draft Genome Sequences of 14 Strains of Pseudomonas Isolated from Prunus sp. Plants
15. Draft Genome Sequences of 18 Strains of Pseudomonas Isolated from Kiwifruit Plants in New Zealand and Overseas
16. Pectobacterium atrosepticum and Pectobacterium carotovorum Harbor Distinct, Independently Acquired Integrative and Conjugative Elements Encoding Coronafacic Acid that Enhance Virulence on Potato Stems
17. Financial Toxicity Among Patients With Advanced Solid Tumors Participating in Early-Phase Clinical Trials
18. Draft Genome Sequences of Three Pectobacterium Strains Causing Blackleg of Potato: P. carotovorum subsp. brasiliensis ICMP 19477, P. atrosepticum ICMP 1526, and P. carotovorum subsp. carotovorum UGC32
19. Draft Genome Sequence for ICMP 5702, the Type Strain of Pectobacterium carotovorum subsp. carotovorum That Causes Soft Rot Disease on Potato
20. Genomes of ‘Candidatus Liberibacter solanacearum’ Haplotype A from New Zealand and the United States Suggest Significant Genome Plasticity in the Species
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