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Summary Anatomy Item Literature (1011) Expression Attributions Wiki
XB-ANAT-4076

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Essential role of heparan sulfates in axon navigation and targeting in the developing visual system., Walz A., Development. June 1, 1997; 124 (12): 2421-30.        


HB-GAM (heparin-binding growth-associated molecule) and heparin-type glycans in the development and plasticity of neuron-target contacts., Rauvala H., Prog Neurobiol. June 1, 1997; 52 (2): 127-44.


Turning of nerve growth cones induced by the activation of protein kinase C., Fu WM., Neuroreport. May 27, 1997; 8 (8): 2005-9.


Purposeful patterns of spontaneous calcium transients in embryonic spinal neurons., Spitzer NC., Semin Cell Dev Biol. February 1, 1997; 8 (1): 13-9.


A role of midkine in the development of the neuromuscular junction., Zhou H., Mol Cell Neurosci. January 1, 1997; 10 (1-2): 56-70.


Evolution of nerve development in frogs. I. The development of the peripheral nervous system in Discoglossus pictus (Discoglossidae)., Schlosser G., Brain Behav Evol. January 1, 1997; 50 (2): 61-93.


Breaking the code: regulation of neuronal differentiation by spontaneous calcium transients., Gu X., Dev Neurosci. January 1, 1997; 19 (1): 33-41.


Retinoid receptors promote primary neurogenesis in Xenopus., Sharpe CR., Development. January 1, 1997; 124 (2): 515-23.        


Beta 1 integrins regulate axon outgrowth and glial cell spreading on a glial-derived extracellular matrix during development and regeneration., Sakaguchi DS., Brain Res Dev Brain Res. December 23, 1996; 97 (2): 235-50.


Regeneration of specific innervation in Xenopus pectoralis muscle., Harada Y., J Neurobiol. December 1, 1996; 31 (4): 433-48.


Specificity and development of innervation pattern of Xenopus pectoralis muscle., Grinnell AD., J Neurobiol. December 1, 1996; 31 (4): 415-32.


Neurogenesis in the olfactory bulb of the frog Xenopus laevis shows unique patterns during embryonic development and metamorphosis., Fritz A., Int J Dev Neurosci. November 1, 1996; 14 (7-8): 931-43.


Cadherin function is required for axon outgrowth in retinal ganglion cells in vivo., Riehl R., Neuron. November 1, 1996; 17 (5): 837-48.


Expression of a novel N-CAM glycoform (NOC-1) on axon tracts in embryonic Xenopus brain., Anderson RB., Dev Dyn. November 1, 1996; 207 (3): 263-9.      


Effects of intermediate filament disruption on the early development of the peripheral nervous system of Xenopus laevis., Lin W., Dev Biol. October 10, 1996; 179 (1): 197-211.            


Adaptive plasticity of Xenopus glial cells in vitro and after CNS fiber tract lesions in vivo., Lang DM., Glia. October 1, 1996; 18 (2): 92-106.


In vivo observations of timecourse and distribution of morphological dynamics in Xenopus retinotectal axon arbors., Witte S., J Neurobiol. October 1, 1996; 31 (2): 219-34.


In vivo evidence for trigeminal nerve guidance by the cement gland in Xenopus., Honoré E., Dev Biol. September 15, 1996; 178 (2): 363-74.              


Molecular identification of SqKv1A. A candidate for the delayed rectifier K channel in squid giant axon., Rosenthal JJ., J Gen Physiol. September 1, 1996; 108 (3): 207-19.


Role of HB-GAM (heparin-binding growth-associated molecule) in proliferation arrest in cells of the developing rat limb and its expression in the differentiating neuromuscular system., Szabat E., Dev Biol. August 25, 1996; 178 (1): 77-89.


Onset of electrical excitability during a period of circus plasma membrane movements in differentiating Xenopus neurons., Olson EC., J Neurosci. August 15, 1996; 16 (16): 5117-29.


Medium weight neurofilament mRNA in goldfish Mauthner axoplasm., Weiner OD., Neurosci Lett. August 2, 1996; 213 (2): 83-6.


Embryonic Xenopus neurites integrate and respond to simultaneous electrical and adhesive guidance cues., Britland S., Exp Cell Res. July 10, 1996; 226 (1): 31-8.


Kappa opioid receptor-like immunoreactivity in guinea pig brain: ultrastructural localization in presynaptic terminals in hippocampal formation., Drake CT., J Comp Neurol. July 1, 1996; 370 (3): 377-95.


Dynamics of synaptic vesicles in cultured spinal cord neurons in relationship to synaptogenesis., Dai Z., Mol Cell Neurosci. June 1, 1996; 7 (6): 443-52.


Thyroid hormone controls the onset of androgen sensitivity in the developing larynx of Xenopus laevis., Robertson JC., Dev Biol. May 25, 1996; 176 (1): 108-23.


Inhibition of protein tyrosine kinases impairs axon extension in the embryonic optic tract., Worley T., J Neurosci. April 1, 1996; 16 (7): 2294-306.


Expression of constitutively active CaMKII in target tissue modifies presynaptic axon arbor growth., Zou DJ., Neuron. March 1, 1996; 16 (3): 529-39.


Xenopus Xsal-1, a vertebrate homolog of the region specific homeotic gene spalt of Drosophila., Hollemann T., Mech Dev. March 1, 1996; 55 (1): 19-32.          


Effects of cytochalasin treatment on short-term synaptic plasticity at developing neuromuscular junctions in frogs., Wang XH., J Physiol. February 15, 1996; 491 ( Pt 1) 187-95.


Background adaptation and synapse plasticity in the pars intermedia of Xenopus laevis., Berghs CA., Neuroscience. February 1, 1996; 70 (3): 833-41.


Essential role of filopodia in chemotropic turning of nerve growth cone induced by a glutamate gradient., Zheng JQ., J Neurosci. February 1, 1996; 16 (3): 1140-9.


A novel neuronal P2x ATP receptor ion channel with widespread distribution in the brain., Séguéla P., J Neurosci. January 15, 1996; 16 (2): 448-55.


Developmental expression of a neuron-specific beta-tubulin in frog (Xenopus laevis): a marker for growing axons during the embryonic period., Moody SA., J Comp Neurol. January 8, 1996; 364 (2): 219-30.            


The number and distribution of bipolar to ganglion cell synapses in the inner plexiform layer of the anuran retina., Buzás P., Vis Neurosci. January 1, 1996; 13 (6): 1099-107.


Signal transduction in vertebrate growth cones navigating in vivo., Chien CB., Perspect Dev Neurobiol. January 1, 1996; 4 (2-3): 253-66.


Calcium and chemotropic turning of nerve growth cones., Zheng JQ., Perspect Dev Neurobiol. January 1, 1996; 4 (2-3): 205-13.


Neurofilaments help maintain normal morphologies and support elongation of neurites in Xenopus laevis cultured embryonic spinal cord neurons., Lin W., J Neurosci. December 1, 1995; 15 (12): 8331-44.                


Effects of brain-derived neurotrophic factor on optic axon branching and remodelling in vivo., Cohen-Cory S., Nature. November 9, 1995; 378 (6553): 192-6.


Growth cones and axon trajectories of the earliest descending serotonergic pathway of Xenopus., Liu S., Neuroscience. November 1, 1995; 69 (1): 309-20.


FGF signaling and target recognition in the developing Xenopus visual system., McFarlane S., Neuron. November 1, 1995; 15 (5): 1017-28.


Modulation of delayed rectifier K+ channel activity by external K+ ions in Xenopus axon., Safronov BV., Pflugers Arch. October 1, 1995; 430 (6): 879-86.


Calcium channel subtypes and intracellular calcium stores modulate electric field-stimulated and -oriented nerve growth., Stewart R., Dev Biol. October 1, 1995; 171 (2): 340-51.


Growth cone neurotransmitter receptor activation modulates electric field-guided nerve growth., Erskine L., Dev Biol. October 1, 1995; 171 (2): 330-9.


Differential distributions of HNK-1 and tenascin immunoreactivity during innervation of myotomal muscle in Xenopus., Somasekhar T., Brain Res Dev Brain Res. August 28, 1995; 88 (1): 53-67.


Collapsin-induced growth cone collapse mediated by an intracellular protein related to UNC-33., Goshima Y., Nature. August 10, 1995; 376 (6540): 509-14.


Presynaptic differentiation induced in cultured neurons by local application of basic fibroblast growth factor., Dai Z., J Neurosci. August 1, 1995; 15 (8): 5466-75.


Induction of neurite outgrowth by MAP kinase in PC12 cells., Fukuda M., Oncogene. July 20, 1995; 11 (2): 239-44.


Erratic deposition of agrin during the formation of Xenopus neuromuscular junctions in culture., Anderson MJ., Dev Biol. July 1, 1995; 170 (1): 1-20.                      


The effects of lyotropic anions on electric field-induced guidance of cultured frog nerves., Erskine L., J Physiol. July 1, 1995; 486 ( Pt 1) 229-36.

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