Towfique Raj
Affiliations: | Neuroscience | Icahn School of Medicine at Mount Sinai, New York, NY, United States |
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Parents
Sign in to add mentorFrancois Balloux | grad student | Cambridge (Evolution Tree) | |
Phil de Jager | post-doc | Broad Institute (MIT/Harvard) |
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Publications
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Das A, Lakhani C, Terwagne C, et al. (2024) Leveraging functional annotations to map rare variants associated with Alzheimer's disease with gruyere. Medrxiv : the Preprint Server For Health Sciences |
Farrell K, Humphrey J, Chang T, et al. (2024) Author Correction: Genetic, transcriptomic, histological, and biochemical analysis of progressive supranuclear palsy implicates glial activation and novel risk genes. Nature Communications. 15: 9828 |
Farrell K, Humphrey J, Chang T, et al. (2024) Genetic, transcriptomic, histological, and biochemical analysis of progressive supranuclear palsy implicates glial activation and novel risk genes. Nature Communications. 15: 7880 |
Ressler HW, Humphrey J, Vialle RA, et al. (2024) MAPT haplotype-associated transcriptomic changes in progressive supranuclear palsy. Acta Neuropathologica Communications. 12: 135 |
Brown AL, Wilkins OG, Keuss MJ, et al. (2024) Author Correction: TDP-43 loss and ALS-risk SNPs drive mis-splicing and depletion of UNC13A. Nature |
Navarro E, Efthymiou AG, Parks M, et al. (2024) G2019S variant is associated with transcriptional changes in Parkinson's disease human myeloid cells under proinflammatory environment. Biorxiv : the Preprint Server For Biology |
Koromina M, Ravi A, Panagiotaropoulou G, et al. (2024) Fine-mapping genomic loci refines bipolar disorder risk genes. Medrxiv : the Preprint Server For Health Sciences |
Roussos P, Kosoy R, Fullard J, et al. (2024) Alzheimer's disease transcriptional landscape in ex-vivo human microglia. Research Square |
Bryce-Smith S, Brown AL, Mehta PR, et al. (2024) TDP-43 loss induces extensive cryptic polyadenylation in ALS/FTD. Biorxiv : the Preprint Server For Biology |
Humphrey J, Brophy E, Kosoy R, et al. (2023) Long-read RNA-seq atlas of novel microglia isoforms elucidates disease-associated genetic regulation of splicing. Medrxiv : the Preprint Server For Health Sciences |