Eunchai Kang, Ph.D.
Affiliations: | Johns Hopkins University, Baltimore, MD |
Area:
Adult NeurogenesisGoogle:
"Eunchai Kang"Mean distance: 14.97 (cluster 11) | S | N | B | C | P |
Parents
Sign in to add mentorHongjun Song | grad student | 2012 | Johns Hopkins | |
(Study of risk genes for schizophrenia in neural development.) |
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Publications
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Neudecker V, Xu J, Thomas MA, et al. (2022) An Update on Preclinical Research in Anesthetic-Induced Developmental Neurotoxicity in Nonhuman Primate and Rodent Models. Journal of Neurosurgical Anesthesiology. 35: 104-113 |
Yanakiev M, Soper O, Berg DA, et al. (2022) Modelling Alzheimer's disease using human brain organoids: current progress and challenges. Expert Reviews in Molecular Medicine. 25: e3 |
Kang E, Song J, Lin Y, et al. (2019) Interplay between a Mental Disorder Risk Gene and Developmental Polarity Switch of GABA Action Leads to Excitation-Inhibition Imbalance. Cell Reports. 28: 1419-1428.e3 |
Xu J, Kang E, Mintz CD. (2018) Anesthetics disrupt brain development via actions on the mTOR pathway. Communicative & Integrative Biology. 11: 1-4 |
Zhang H, Kang E, Wang Y, et al. (2018) Publisher Correction: Brain-specific Crmp2 deletion leads to neuronal development deficits and behavioural impairments in mice. Nature Communications. 9: 16229 |
Ye F, Kang E, Yu C, et al. (2017) DISC1 Regulates Neurogenesis via Modulating Kinetochore Attachment of Ndel1/Nde1 during Mitosis. Neuron. 96: 1204 |
Ye F, Kang E, Yu C, et al. (2017) DISC1 Regulates Neurogenesis via Modulating Kinetochore Attachment of Ndel1/Nde1 during Mitosis. Neuron |
Kang E, Jiang D, Ryu YK, et al. (2017) Early postnatal exposure to isoflurane causes cognitive deficits and disrupts development of newborn hippocampal neurons via activation of the mTOR pathway. Plos Biology. 15: e2001246 |
Kang E, Berg DA, Furmanski O, et al. (2016) Neurogenesis and developmental anesthetic neurotoxicity. Neurotoxicology and Teratology |
Zhang H, Kang E, Wang Y, et al. (2016) Brain-specific Crmp2 deletion leads to neuronal development deficits and behavioural impairments in mice. Nature Communications. 7 |