Alan G. Cheng
Affiliations: | Otolaryngology | Stanford University, Palo Alto, CA |
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"Alan Cheng"Mean distance: 16.87 (cluster 6)
Children
Sign in to add traineeJulia Abitbol | grad student | Stanford | |
Patrick Atkinson | grad student | Stanford | |
Renjie Chai | grad student | Stanford (Cell Biology Tree) | |
Taha Jan | grad student | Stanford | |
Grace S. Kim | grad student | Stanford | |
Mary O'Sullivan | grad student | Stanford | |
Zahra N. Sayyid | grad student | Stanford | |
Mamiko Niwa | post-doc | Stanford |
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Publications
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Udagawa T, Takahashi E, Tatsumi N, et al. (2024) Loss of Pax3 causes reduction of melanocytes in the developing mouse cochlea. Scientific Reports. 14: 2210 |
Choi SW, Abitbol J, Cheng A. (2024) Hair Cell Regeneration: From Animals to Humans. Clinical and Experimental Otorhinolaryngology |
Aaron KA, Pekrun K, Atkinson PJ, et al. (2023) Selection of viral capsids and promoters affects the efficacy of rescue of -deficient cochlea. Molecular Therapy. Methods & Clinical Development. 30: 413-428 |
Ebeid M, Kishimoto I, Roy P, et al. (2023) β-Catenin transcriptional activity is required for establishment of inner pillar cell identity during cochlear development. Plos Genetics. 19: e1010925 |
Udagawa T, Takahashi E, Tatsumi N, et al. (2023) Pax3 deficiency diminishes melanocytes in the developing mouse cochlea. Research Square |
Xia A, Udagawa T, Quiñones PM, et al. (2022) The impact of targeted ablation of one row of outer hair cells and Deiters' cells on cochlear amplification. Journal of Neurophysiology |
Kim GS, Wang T, Sayyid ZN, et al. (2022) Repair of surviving hair cells in the damaged mouse utricle. Proceedings of the National Academy of Sciences of the United States of America. 119: e2116973119 |
Kim J, Hemachandran S, Cheng AG, et al. (2022) Identifying targets to prevent aminoglycoside ototoxicity. Molecular and Cellular Neurosciences. 120: 103722 |
Udagawa T, Atkinson PJ, Milon B, et al. (2021) Lineage-tracing and translatomic analysis of damage-inducible mitotic cochlear progenitors identifies candidate genes regulating regeneration. Plos Biology. 19: e3001445 |
Sun H, Wang T, Atkinson PJ, et al. (2021) Gpr125 Marks Distinct Cochlear Cell Types and Is Dispensable for Cochlear Development and Hearing. Frontiers in Cell and Developmental Biology. 9: 690955 |