Hollis Cline

Affiliations: 
Cold Spring Harbor Laboratory, Cold Spring Harbor, NY 
Area:
development, visual system
Website:
http://clinelab.cshl.edu/
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"Hollis Cline"
Mean distance: 11.98 (cluster 6)
 
SNBCP

Children

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Tyler  James Wishard research assistant 2010- TSRI
Gangyi Wu grad student CSHL
Sahil H. Shah grad student 2014- TSRI
Zheng Li grad student 2001 SUNY Stony Brook
Ashkan Javaherian grad student 1997-2004 SUNY Stony Brook
Kendall Rae Van Keuren-Jensen grad student 2005 SUNY Stony Brook
Kasandra Lovette Burgos grad student 2008 SUNY Stony Brook
Shu-Ling Chiu grad student 2003-2008 CSHL
Janet S. Lee grad student 2009 SUNY Stony Brook
Jane Lee grad student 2009 SUNY Stony Brook
Han-Hsuan Liu grad student 2011-2017 Scripps Institute
Colin Akerman post-doc Oxford
Isabel Cantallops post-doc
Kurt Haas post-doc Cold Spring Harbor Lab
Vatsala Thirumalai post-doc CSHL
Christopher K. Thompson post-doc Scripps Institute
Dong-jing Zou post-doc CSHL
James A. Demas post-doc 2004- CSHL
Jianli Li post-doc 2004- CSHL
Masaki Hiramoto post-doc 2006- CSHL
Wanhua Shen post-doc 2008- Scripps Institute
Carlos D. Aizenman post-doc 2000-2004 CSHL
Edward S. Ruthazer post-doc 1998-2005 CSHL
Jennifer Bestman post-doc 2003-2008 CSHL
Elly Nedivi research scientist MIT

Collaborators

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Alan R. Kay collaborator CSHL
BETA: Related publications

Publications

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Gambrill AC, Faulkner RL, McKeown CR, et al. (2019) Enhanced visual experience rehabilitates the injured brain in Xenopus tadpoles in an NMDAR-dependent manner. Journal of Neurophysiology. 121: 306-320
He HY, Shen W, Zheng L, et al. (2018) Excitatory synaptic dysfunction cell-autonomously decreases inhibitory inputs and disrupts structural and functional plasticity. Nature Communications. 9: 2893
Gambrill AC, Faulkner RL, Cline HT. (2018) Direct intertectal inputs are an integral component of the bilateral sensorimotor circuit for behavior in Xenopus tadpoles. Journal of Neurophysiology
Liu HH, Mcclatchy DB, Schiapparelli L, et al. (2018) Role of the visual experience-dependent nascent proteome in neuronal plasticity. Elife. 7
Lau M, Li J, Cline HT. (2017) In Vivo Analysis of the Neurovascular Niche in the Developing Xenopus Brain. Eneuro. 4
Pratt KG, Hiramoto M, Cline HT. (2016) An Evolutionarily Conserved Mechanism for Activity-Dependent Visual Circuit Development. Frontiers in Neural Circuits. 10: 79
Thompson CK, Cline HT. (2016) Thyroid Hormone Acts Locally to Increase Neurogenesis, Neuronal Differentiation, and Dendritic Arbor Elaboration in the Tadpole Visual System. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 36: 10356-10375
Truszkowski TL, James EJ, Hasan M, et al. (2016) Fragile X mental retardation protein knockdown in the developing Xenopus tadpole optic tectum results in enhanced feedforward inhibition and behavioral deficits. Neural Development. 11: 14
Liu HH, Cline HT. (2016) Fragile X Mental Retardation Protein Is Required to Maintain Visual Conditioning-Induced Behavioral Plasticity by Limiting Local Protein Synthesis. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 36: 7325-39
He HY, Shen W, Hiramoto M, et al. (2016) Experience-Dependent Bimodal Plasticity of Inhibitory Neurons in Early Development. Neuron
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