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The effects of the NMDAR co-agonist D-serine on the structure and function of optic tectal neurons in the developing visual system. , Chorghay Z, Li VJ, Schohl A , Ghosh A, Ruthazer ES ., Sci Rep. August 17, 2023; 13 (1): 13383.
BDNF signaling in correlation-dependent structural plasticity in the developing visual system. , Kutsarova E, Schohl A , Munz M, Wang A , Zhang YY , Bilash OM, Ruthazer ES ., PLoS Biol. April 1, 2023; 21 (4): e3002070.
Activity-dependent alteration of early myelin ensheathment in a developing sensory circuit. , Chorghay Z, MacFarquhar D, Li VJ, Aufmkolk S, Schohl A , Wiseman PW, Káradóttir RT, Ruthazer ES ., J Comp Neurol. April 1, 2022; 530 (6): 871-885.
Topographic map formation and the effects of NMDA receptor blockade in the developing visual system. , Li VJ, Schohl A , Ruthazer ES ., Proc Natl Acad Sci U S A. February 22, 2022; 119 (8):
Sodium-calcium exchanger mediates sensory-evoked glial calcium transients in the developing retinotectal system. , Benfey NJ, Li VJ, Schohl A , Ruthazer ES ., Cell Rep. October 5, 2021; 37 (1): 109791.
Improved genetically encoded near-infrared fluorescent calcium ion indicators for in vivo imaging. , Qian Y, Cosio DMO, Piatkevich KD, Aufmkolk S, Su WC, Celiker OT, Schohl A , Murdock MH, Aggarwal A, Chang YF, Wiseman PW, Ruthazer ES , Boyden ES, Campbell RE., PLoS Biol. November 2, 2020; 18 (11): e3000965.
TORC1 selectively regulates synaptic maturation and input convergence in the developing visual system. , Gobert D, Schohl A , Kutsarova E, Ruthazer ES ., Dev Neurobiol. September 1, 2020; 80 (9-10): 332-350.
Postsynaptic and Presynaptic NMDARs Have Distinct Roles in Visual Circuit Development. , Kesner P, Schohl A , Warren EC, Ma F, Ruthazer ES ., Cell Rep. July 28, 2020; 32 (4): 107955.
A Simple and Efficient Method for Visualizing Individual Cells in vivo by Cre-Mediated Single-Cell Labeling by Electroporation (CREMSCLE). , Schohl A , Chorghay Z, Ruthazer ES ., Front Neural Circuits. June 16, 2020; 14 47.
Endocannabinoid signaling enhances visual responses through modulation of intracellular chloride levels in retinal ganglion cells. , Miraucourt LS, Tsui J , Gobert D, Desjardins JF, Schohl A , Sild M, Spratt P, Castonguay A, De Koninck Y, Marsh-Armstrong N , Wiseman PW, Ruthazer ES ., Elife. August 8, 2016; 5
Neural Activity-Dependent Regulation of Radial Glial Filopodial Motility Is Mediated by Glial cGMP-Dependent Protein Kinase 1 and Contributes to Synapse Maturation in the Developing Visual System. , Sild M, Van Horn MR, Schohl A , Jia D, Ruthazer ES ., J Neurosci. May 11, 2016; 36 (19): 5279-88.
Rapid Hebbian axonal remodeling mediated by visual stimulation. , Munz M, Gobert D, Schohl A , Poquérusse J, Podgorski K, Spratt P, Ruthazer ES ., Science. May 23, 2014; 344 (6186): 904-9.
In vivo time-lapse imaging of neuronal development in Xenopus. , Ruthazer ES , Schohl A , Schwartz N , Tavakoli A, Tremblay M, Cline HT ., Cold Spring Harb Protoc. September 1, 2013; 2013 (9): 804-9.
Labeling individual neurons in the brains of live Xenopus tadpoles by electroporation of dyes or DNA. , Ruthazer ES , Schohl A , Schwartz N , Tavakoli A, Tremblay M, Cline HT ., Cold Spring Harb Protoc. September 1, 2013; 2013 (9): 869-72.
Bulk electroporation of retinal ganglion cells in live Xenopus tadpoles. , Ruthazer ES , Schohl A , Schwartz N , Tavakoli A, Tremblay M, Cline HT ., Cold Spring Harb Protoc. August 1, 2013; 2013 (8): 771-5.
Dye labeling retinal ganglion cell axons in live Xenopus tadpoles. , Ruthazer ES , Schohl A , Schwartz N , Tavakoli A, Tremblay M, Cline HT ., Cold Spring Harb Protoc. August 1, 2013; 2013 (8): 768-70.
Activity-dependent transcription of BDNF enhances visual acuity during development. , Schwartz N , Schohl A , Ruthazer ES ., Neuron. May 12, 2011; 70 (3): 455-67.
Regulation of radial glial motility by visual experience. , Tremblay M, Fugère V, Tsui J , Schohl A , Tavakoli A, Travençolo BA, Costa Lda F, Ruthazer ES ., J Neurosci. November 11, 2009; 29 (45): 14066-76.
Neural activity regulates synaptic properties and dendritic structure in vivo through calcineurin/ NFAT signaling. , Schwartz N , Schohl A , Ruthazer ES ., Neuron. June 11, 2009; 62 (5): 655-69.
beta-Catenin controls cell sorting at the notochord- somite boundary independently of cadherin-mediated adhesion. , Reintsch WE, Habring-Mueller A, Wang RW , Schohl A , Fagotto F ., J Cell Biol. August 15, 2005; 170 (4): 675-86.
Nucleo-cytoplasmic shuttling of Axin, a negative regulator of the Wnt-beta-catenin Pathway. , Wiechens N, Heinle K, Englmeier L, Schohl A , Fagotto F ., J Biol Chem. February 13, 2004; 279 (7): 5263-7.
A role for maternal beta-catenin in early mesoderm induction in Xenopus. , Schohl A , Fagotto F ., EMBO J. July 1, 2003; 22 (13): 3303-13.
Oocytes and embryos of Xenopus laevis express two different isoforms of germ cell nuclear factor ( GCNF, NR6A1). , Schohl A , Barreto G, Joos TO , Dreyer C., Mech Dev. October 1, 2002; 118 (1-2): 261-4.
Beta-catenin, MAPK and Smad signaling during early Xenopus development. , Schohl A , Fagotto F ., Development. January 1, 2002; 129 (1): 37-52.