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XB-ANAT-487

Papers associated with neuron

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A novel method to study the local mitochondrial fusion in myelinated axons in vivo., Zhang CL., J Neurosci Methods. May 30, 2012; 207 (1): 51-8.


The role of a trigeminal sensory nucleus in the initiation of locomotion., Buhl E., J Physiol. May 15, 2012; 590 (10): 2453-69.


Retraction notice to: Overexpression of αCP2, a translational repressor of GAP-43, inhibited axon outgrowth during development in Xenopus laevis [Biochem. Biophys. Res. Commun. 419 (2012) 262–267]., Wang J., Biochem Biophys Res Commun. May 11, 2012; 421 (3): 634.


The control of locomotor frequency by excitation and inhibition., Li WC., J Neurosci. May 2, 2012; 32 (18): 6220-30.


Median facial clefts in Xenopus laevis: roles of retinoic acid signaling and homeobox genes., Kennedy AE., Dev Biol. May 1, 2012; 365 (1): 229-40.                              


Post-translational modification of Ngn2 differentially affects transcription of distinct targets to regulate the balance between progenitor maintenance and differentiation., Hindley C., Development. May 1, 2012; 139 (10): 1718-23.      


microRNA-9 regulates axon extension and branching by targeting Map1b in mouse cortical neurons., Dajas-Bailador F., Nat Neurosci. May 1, 2012; .


Microtubule redistribution in growth cones elicited by focal inactivation of kinesin-5., Nadar VC., J Neurosci. April 25, 2012; 32 (17): 5783-94.


Melatonin receptors are anatomically organized to modulate transmission specifically to cone pathways in the retina of Xenopus laevis., Wiechmann AF., J Comp Neurol. April 15, 2012; 520 (6): 1115-27.                  


Vision drives correlated activity without patterned spontaneous activity in developing Xenopus retina., Demas JA., Dev Neurobiol. April 1, 2012; 72 (4): 537-46.


Imaging adhesion and signaling dynamics in Xenopus laevis growth cones., Santiago-Medina M., Dev Neurobiol. April 1, 2012; 72 (4): 585-99.          


A functional scaffold of CNS neurons for the vertebrates: the developing Xenopus laevis spinal cord., Roberts A., Dev Neurobiol. April 1, 2012; 72 (4): 575-84.        


The Xenopus retinal ganglion cell as a model neuron to study the establishment of neuronal connectivity., McFarlane S., Dev Neurobiol. April 1, 2012; 72 (4): 520-36.


Expression patterns of Ephs and ephrins throughout retinotectal development in Xenopus laevis., Higenell V., Dev Neurobiol. April 1, 2012; 72 (4): 547-63.              


14-3-3 proteins regulate retinal axon growth by modulating ADF/cofilin activity., Yoon BC., Dev Neurobiol. April 1, 2012; 72 (4): 600-14.                


Dynamic responses of Xenopus retinal ganglion cell axon growth cones to netrin-1 as they innervate their in vivo target., Shirkey NJ., Dev Neurobiol. April 1, 2012; 72 (4): 628-48.                  


A hindbrain-repressive Wnt3a/Meis3/Tsh1 circuit promotes neuronal differentiation and coordinates tissue maturation., Elkouby YM., Development. April 1, 2012; 139 (8): 1487-97.                    


Reserve pool neuron transmitter respecification: Novel neuroplasticity., Dulcis D., Dev Neurobiol. April 1, 2012; 72 (4): 465-74.


The RNA-binding protein XSeb4R regulates maternal Sox3 at the posttranscriptional level during maternal-zygotic transition in Xenopus., Bentaya S., Dev Biol. March 15, 2012; 363 (2): 362-72.                      


Abnormal visual processing and increased seizure susceptibility result from developmental exposure to the biocide methylisothiazolinone., Spawn A., Neuroscience. March 15, 2012; 205 194-204.


Retracted: Overexpression of αCP2, a translational repressor of GAP-43, inhibited axon outgrowth during development in Xenopus laevis., Wang J., Biochem Biophys Res Commun. March 9, 2012; 419 (2): 262-7.


GlialCAM, a protein defective in a leukodystrophy, serves as a ClC-2 Cl(-) channel auxiliary subunit., Jeworutzki E., Neuron. March 8, 2012; 73 (5): 951-61.                


Heterogeneous nuclear ribonucleoprotein K, an RNA-binding protein, is required for optic axon regeneration in Xenopus laevis., Liu Y., J Neurosci. March 7, 2012; 32 (10): 3563-74.              


A β-amyloid oligomer directly modulates P/Q-type calcium currents in Xenopus oocytes., Mezler M., Br J Pharmacol. March 1, 2012; 165 (5): 1572-83.


Novel roles of the chemorepellent axon guidance molecule RGMa in cell migration and adhesion., Lah GJ., Mol Cell Biol. March 1, 2012; 32 (5): 968-80.


Local translation of extranuclear lamin B promotes axon maintenance., Yoon BC., Cell. February 17, 2012; 148 (4): 752-64.                              


Dysmorphic photoreceptors in a P23H mutant rhodopsin model of retinitis pigmentosa are metabolically active and capable of regenerating to reverse retinal degeneration., Lee DC., J Neurosci. February 8, 2012; 32 (6): 2121-8.            


In vivo time-lapse imaging of cell proliferation and differentiation in the optic tectum of Xenopus laevis tadpoles., Bestman JE., J Comp Neurol. February 1, 2012; 520 (2): 401-33.                      


Xaml1/Runx1 is required for the specification of Rohon-Beard sensory neurons in Xenopus., Park BY., Dev Biol. February 1, 2012; 362 (1): 65-75.                


Regulation of spinal interneuron differentiation by the paracrine action of glycine., Côté S., Dev Neurobiol. February 1, 2012; 72 (2): 208-14.


Single vesicle imaging indicates distinct modes of rapid membrane retrieval during nerve growth., Hines JH., BMC Biol. January 30, 2012; 10 4.                          


GABA expression and regulation by sensory experience in the developing visual system., Miraucourt LS., PLoS One. January 1, 2012; 7 (1): e29086.            


Functional clustering drives encoding improvement in a developing brain network during awake visual learning., Podgorski K., PLoS Biol. January 1, 2012; 10 (1): e1001236.                  


Targeted inactivation of Snail family EMT regulatory factors by a Co(III)-Ebox conjugate., Harney AS., PLoS One. January 1, 2012; 7 (2): e32318.            


Mammalian growth cone turning assays identify distinct cell signalling mechanisms that underlie axon growth, guidance and regeneration., Murray AJ., Methods Mol Biol. January 1, 2012; 846 167-78.


Amino acid residues contributing to function of the heteromeric insect olfactory receptor complex., Nakagawa T., PLoS One. January 1, 2012; 7 (3): e32372.        


Cell-autonomous alterations in dendritic arbor morphology and connectivity induced by overexpression of MeCP2 in Xenopus central neurons in vivo., Marshak S., PLoS One. January 1, 2012; 7 (3): e33153.                    


CRIM1 complexes with ß-catenin and cadherins, stabilizes cell-cell junctions and is critical for neural morphogenesis., Ponferrada VG., PLoS One. January 1, 2012; 7 (3): e32635.                        


Identification of a novel signaling pathway and its relevance for GluA1 recycling., Seebohm G., PLoS One. January 1, 2012; 7 (3): e33889.                


Expression of odorant receptor family, type 2 OR in the aquatic olfactory cavity of amphibian frog Xenopus tropicalis., Amano T., PLoS One. January 1, 2012; 7 (4): e33922.            


Identification and characterization of ADAM41, a novel ADAM metalloproteinase in Xenopus., Xu G., Int J Dev Biol. January 1, 2012; 56 (5): 333-9.          


Reciprocal regulation of axonal Filopodia and outgrowth during neuromuscular junction development., Li PP., PLoS One. January 1, 2012; 7 (9): e44759.              


The biochemical anatomy of cortical inhibitory synapses., Heller EA., PLoS One. January 1, 2012; 7 (6): e39572.            


Amino acid- vs. peptide-odorants: responses of individual olfactory receptor neurons in an aquatic species., Hassenklöver T., PLoS One. January 1, 2012; 7 (12): e53097.        


Ultra-bright and -stable red and near-infrared squaraine fluorophores for in vivo two-photon imaging., Podgorski K., PLoS One. January 1, 2012; 7 (12): e51980.      


miR-124 acts through CoREST to control onset of Sema3A sensitivity in navigating retinal growth cones., Baudet ML., Nat Neurosci. December 4, 2011; 15 (1): 29-38.


Generation of locomotion rhythms without inhibition in vertebrates: the search for pacemaker neurons., Li WC., Integr Comp Biol. December 1, 2011; 51 (6): 879-89.


Chemokine ligand Xenopus CXCLC (XCXCLC) regulates cell movements during early morphogenesis., Goto T., Dev Growth Differ. December 1, 2011; 53 (9): 971-81.            


Bidirectional remodeling of β1-integrin adhesions during chemotropic regulation of nerve growth., Carlstrom LP., BMC Biol. November 30, 2011; 9 82.              


A heteromeric Texas coral snake toxin targets acid-sensing ion channels to produce pain., Bohlen CJ., Nature. November 16, 2011; 479 (7373): 410-4.      

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