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Summary Anatomy Item Literature (724) Expression Attributions Wiki
XB-ANAT-3723

Papers associated with axon

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Defining classes of spinal interneuron and their axonal projections in hatchling Xenopus laevis tadpoles., Li WC., J Comp Neurol. December 17, 2001; 441 (3): 248-65.


Loss of neurofilaments alters axonal growth dynamics., Walker KL., J Neurosci. December 15, 2001; 21 (24): 9655-66.


Receptor protein tyrosine phosphatases regulate retinal ganglion cell axon outgrowth in the developing Xenopus visual system., Johnson KG., J Neurobiol. November 5, 2001; 49 (2): 99-117.


Visualizing synapse formation in arborizing optic axons in vivo: dynamics and modulation by BDNF., Alsina B., Nat Neurosci. November 1, 2001; 4 (11): 1093-101.


Zebrafish deadly seven functions in neurogenesis., Gray M., Dev Biol. September 15, 2001; 237 (2): 306-23.


A novel Xenopus acetyltransferase with a dynamic expression in early development., Choi SC., Biochem Biophys Res Commun. August 3, 2001; 285 (5): 1338-43.            


Developmental regulation of CPG15 expression in Xenopus., Nedivi E., J Comp Neurol. July 9, 2001; 435 (4): 464-73.                    


The scaffold protein, Homer1b/c, regulates axon pathfinding in the central nervous system in vivo., Foa L., Nat Neurosci. May 1, 2001; 4 (5): 499-506.


Physiological control of Xunc18 expression in neuroendocrine melanotrope cells of Xenopus laevis., Kolk SM., Endocrinology. May 1, 2001; 142 (5): 1950-7.


Differential expression and localization of neuronal intermediate filament proteins within newly developing neurites in dissociated cultures of Xenopus laevis embryonic spinal cord., Undamatla J., Cell Motil Cytoskeleton. May 1, 2001; 49 (1): 16-32.


Control of retinal growth and axon divergence at the chiasm: lessons from Xenopus., Mann F., Bioessays. April 1, 2001; 23 (4): 319-26.


Binding of DCC by netrin-1 to mediate axon guidance independent of adenosine A2B receptor activation., Stein E., Science. March 9, 2001; 291 (5510): 1976-82.


Identification and characterization of roundabout orthologs in zebrafish., Challa AK., Mech Dev. March 1, 2001; 101 (1-2): 249-53.


Pax genes in development and maturation of the vertebrate visual system: implications for optic nerve regeneration., Ziman MR., Histol Histopathol. January 1, 2001; 16 (1): 239-49.


Nitric oxide modulates retinal ganglion cell axon arbor remodeling in vivo., Cogen J., J Neurobiol. November 5, 2000; 45 (2): 120-33.              


Structure of the olfactory bulb in tadpoles of Xenopus laevis., Nezlin LP., Cell Tissue Res. October 1, 2000; 302 (1): 21-9.


Postsynaptic CPG15 promotes synaptic maturation and presynaptic axon arbor elaboration in vivo., Cantallops I., Nat Neurosci. October 1, 2000; 3 (10): 1004-11.


Expression and putative role of neuropilin-1 in the early scaffold of axon tracts in embryonic Xenopus brain., Anderson RB., Dev Dyn. September 1, 2000; 219 (1): 102-8.    


Photoreceptor classes and transmission at the photoreceptor synapse in the retina of the clawed frog, Xenopus laevis., Witkovsky P., Microsc Res Tech. September 1, 2000; 50 (5): 338-46.


The multiple decisions made by growth cones of RGCs as they navigate from the retina to the tectum in Xenopus embryos., Dingwell KS., J Neurobiol. August 1, 2000; 44 (2): 246-59.


Localization and physiological regulation of the exocytosis protein SNAP-25 in the brain and pituitary gland of Xenopus laevis., Kolk SM., J Neuroendocrinol. July 1, 2000; 12 (7): 694-706.


The development of abnormal axon trajectories after rotation of one eye in Xenopus., Guo Y., J Neurosci. June 1, 2000; 20 (11): 4189-97.


An essential role of the neuronal cell adhesion molecule contactin in development of the Xenopus primary sensory system., Fujita N., Dev Biol. May 15, 2000; 221 (2): 308-20.                


Rodent nerve-muscle cell culture system for studies of neuromuscular junction development: refinements and applications., Daniels MP., Microsc Res Tech. April 1, 2000; 49 (1): 26-37.


Expression of CRYP-alpha, LAR, PTP-delta, and PTP-rho in the developing Xenopus visual system., Johnson KG., Mech Dev. April 1, 2000; 92 (2): 291-4.      


Patterns of calretinin, calbindin, and tyrosine-hydroxylase expression are consistent with the prosomeric map of the frog diencephalon., Milán FJ., J Comp Neurol. March 27, 2000; 419 (1): 96-121.                  


A role for voltage-gated potassium channels in the outgrowth of retinal axons in the developing visual system., McFarlane S., J Neurosci. February 1, 2000; 20 (3): 1020-9.                  


DCC plays a role in navigation of forebrain axons across the ventral midbrain commissure in embryonic xenopus., Anderson RB., Dev Biol. January 15, 2000; 217 (2): 244-53.          


Dendritic morphogenesis: building an arbor., McFarlane S., Mol Neurobiol. January 1, 2000; 22 (1-3): 1-9.


Attraction vs. repulsion: the growth cone decides., McFarlane S., Biochem Cell Biol. January 1, 2000; 78 (5): 563-8.


Plasma membrane recycling and flow in growing neurites., Zakharenko S., Neuroscience. January 1, 2000; 97 (1): 185-94.


Development and regenerative capacity of descending supraspinal pathways in tetrapods: a comparative approach., ten Donkelaar HJ., Adv Anat Embryol Cell Biol. January 1, 2000; 154 iii-ix, 1-145.


Embryonic expression and extracellular secretion of Xenopus slit., Chen JH., Neuroscience. January 1, 2000; 96 (1): 231-6.


The receptor tyrosine kinase EphB4 and ephrin-B ligands restrict angiogenic growth of embryonic veins in Xenopus laevis., Helbling PM., Development. January 1, 2000; 127 (2): 269-78.              


The role of the brain in metamorphosis of the olfactory epithelium in the frog, Xenopus laevis., Higgs DM., Brain Res Dev Brain Res. December 10, 1999; 118 (1-2): 185-95.


Role of acetylcholinesterase in the development of axon tracts within the embryonic vertebrate brain., Anderson RB., Int J Dev Neurosci. December 1, 1999; 17 (8): 787-93.


Expression of the Lewis group carbohydrate antigens during Xenopus development., Yoshida-Noro C., Glycobiology. December 1, 1999; 9 (12): 1323-30.


BDNF modulates, but does not mediate, activity-dependent branching and remodeling of optic axon arbors in vivo., Cohen-Cory S., J Neurosci. November 15, 1999; 19 (22): 9996-10003.


Brain-derived neurotrophic factor differentially regulates retinal ganglion cell dendritic and axonal arborization in vivo., Lom B., J Neurosci. November 15, 1999; 19 (22): 9928-38.


Speckle microscopic evaluation of microtubule transport in growing nerve processes., Chang S., Nat Cell Biol. November 1, 1999; 1 (7): 399-403.


Postsynaptic calcium/calmodulin-dependent protein kinase II is required to limit elaboration of presynaptic and postsynaptic neuronal arbors., Zou DJ., J Neurosci. October 15, 1999; 19 (20): 8909-18.


Plexins are a large family of receptors for transmembrane, secreted, and GPI-anchored semaphorins in vertebrates., Tamagnone L., Cell. October 1, 1999; 99 (1): 71-80.


A family of proteins implicated in axon guidance and outgrowth., Quinn CC., J Neurobiol. October 1, 1999; 41 (1): 158-64.


Effects of a centipede venom fraction on insect nervous system, a native Xenopus oocyte receptor and on an expressed Drosophila muscarinic receptor., Stankiewicz M., Toxicon. October 1, 1999; 37 (10): 1431-45.


Growth-cone attraction to netrin-1 is converted to repulsion by laminin-1., Höpker VH., Nature. September 2, 1999; 401 (6748): 69-73.


Neuronal pathfinding during development of the rostral brain in Xenopus., Key B., Clin Exp Pharmacol Physiol. September 1, 1999; 26 (9): 752-4.


Motoneurons of the axial swimming muscles in hatchling Xenopus tadpoles: features, distribution, and central synapses., Roberts A., J Comp Neurol. August 30, 1999; 411 (3): 472-86.


Cloning and characterization of neuropilin-1-interacting protein: a PSD-95/Dlg/ZO-1 domain-containing protein that interacts with the cytoplasmic domain of neuropilin-1., Cai H., J Neurosci. August 1, 1999; 19 (15): 6519-27.


Responses of Xenopus laevis water nose to water-soluble and volatile odorants., Iida A., J Gen Physiol. July 1, 1999; 114 (1): 85-92.                


Axon guidance: A balance of signals sets axons on the right track., Gallo G., Curr Biol. July 1, 1999; 9 (13): R490-2.    

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