Michael D. Taylor
Affiliations: | Univ. Missouri Kansas City, Kansas City, MO, United States |
Area:
Neuromuscular InjuryGoogle:
"Michael Taylor"Mean distance: 17.38 (cluster 24) | S | N | B | C | P |
Parents
Sign in to add mentorDouglas E. Wright | grad student | 1998-2004 | University of Kansas | |
(Regulation of the response of injured spindle fibers by muscle-derived neurotrophin-3.) |
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Publications
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Visvanathan A, Saulnier O, Chen C, et al. (2024) Early rhombic lip Protogenin stem cells in a human-specific neurovascular niche initiate and maintain group 3 medulloblastoma. Cell |
Cui H, Maan H, Vladoiu MC, et al. (2024) DeepVelo: deep learning extends RNA velocity to multi-lineage systems with cell-specific kinetics. Genome Biology. 25: 27 |
Zhao L, Qiu Z, Yang Z, et al. (2024) Lymphatic endothelial-like cells promote glioblastoma stem cell growth through cytokine-driven cholesterol metabolism. Nature Cancer |
Chen X, Momin A, Wanggou S, et al. (2022) Mechanosensitive brain tumor cells construct blood-tumor barrier to mask chemosensitivity. Neuron |
Hamed AA, Kunz DJ, El-Hamamy I, et al. (2022) A brain precursor atlas reveals the acquisition of developmental-like states in adult cerebral tumours. Nature Communications. 13: 4178 |
Ocasio JK, Babcock B, Malawsky D, et al. (2022) Author Correction: scRNA-seq in medulloblastoma shows cellular heterogeneity and lineage expansion support resistance to SHH inhibitor therapy. Nature Communications. 13: 3048 |
Ocasio J, Babcock B, Malawsky D, et al. (2019) scRNA-seq in medulloblastoma shows cellular heterogeneity and lineage expansion support resistance to SHH inhibitor therapy. Nature Communications. 10: 5829 |
Suzuki H, Kumar SA, Shuai S, et al. (2019) Recurrent noncoding U1 snRNA mutations drive cryptic splicing in SHH medulloblastoma. Nature. 574: 707-711 |
Suzuki H, Kumar SA, Shuai S, et al. (2019) Recurrent non-coding U1-snRNA mutations drive cryptic splicing in Shh medulloblastoma. Nature |
Zhang L, He X, Liu X, et al. (2019) Single-Cell Transcriptomics in Medulloblastoma Reveals Tumor-Initiating Progenitors and Oncogenic Cascades during Tumorigenesis and Relapse. Cancer Cell |