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    Results: 1 to 20 of 467

    1.

    Retinal waves are unlikely to instruct the formation of eye-specific retinogeniculate projections.

    Chalupa LM.

    Neural Dev. 2009 Jul 6;4:25. Review.PMID: 19580684 [PubMed - indexed for MEDLINE]Related articlesFree article

    2.

    Retinal waves are likely to instruct the formation of eye-specific retinogeniculate projections.

    Feller MB.

    Neural Dev. 2009 Jul 6;4:24. Review.PMID: 19580682 [PubMed - indexed for MEDLINE]Related articlesFree article

    3.

    A reassessment of the role of activity in the formation of eye-specific retinogeniculate projections.

    Chalupa LM.

    Brain Res Rev. 2007 Oct;55(2):228-36. Epub 2007 Mar 13. Review.PMID: 17433447 [PubMed - indexed for MEDLINE]Related articles

    4.

    Dynamics of spontaneous activity in the fetal macaque retina during development of retinogeniculate pathways.

    Warland DK, Huberman AD, Chalupa LM.

    J Neurosci. 2006 May 10;26(19):5190-7.PMID: 16687510 [PubMed - indexed for MEDLINE]Related articlesFree article

    5.

    Development of the mammalian retinogeniculate pathway: target finding, transient synapses and binocular segregation.

    So KF, Campbell G, Lieberman AR.

    J Exp Biol. 1990 Oct;153:85-104. Review.PMID: 2280230 [PubMed - indexed for MEDLINE]Related articlesFree article

    6.

    Switching retinogeniculate axon laterality leads to normal targeting but abnormal eye-specific segregation that is activity dependent.

    Rebsam A, Petros TJ, Mason CA.

    J Neurosci. 2009 Nov 25;29(47):14855-63.PMID: 19940181 [PubMed - indexed for MEDLINE]Related articles

    7.

    The role of spontaneous retinal activity before eye opening in the maturation of form and function in the retinogeniculate pathway of the ferret.

    Cook PM, Prusky G, Ramoa AS.

    Vis Neurosci. 1999 May-Jun;16(3):491-501.PMID: 10349970 [PubMed - indexed for MEDLINE]Related articles

    8.

    The role of retinal waves and synaptic normalization in retinogeniculate development.

    Eglen SJ.

    Philos Trans R Soc Lond B Biol Sci. 1999 Feb 28;354(1382):497-506.PMID: 10212494 [PubMed - indexed for MEDLINE]Related articlesFree article

    9.

    Brain waves and brain wiring: the role of endogenous and sensory-driven neural activity in development.

    Penn AA, Shatz CJ.

    Pediatr Res. 1999 Apr;45(4 Pt 1):447-58. Review.PMID: 10203134 [PubMed - indexed for MEDLINE]Related articles

    10.

    Development of On and Off retinal pathways and retinogeniculate projections.

    Chalupa LM, Günhan E.

    Prog Retin Eye Res. 2004 Jan;23(1):31-51. Review.PMID: 14766316 [PubMed - indexed for MEDLINE]Related articles

    11.

    Eye-specific retinogeniculate segregation independent of normal neuronal activity.

    Huberman AD, Wang GY, Liets LC, Collins OA, Chapman B, Chalupa LM.

    Science. 2003 May 9;300(5621):994-8. Erratum in: Science. 2003 Jun 13;300(5626):1661. PMID: 12738869 [PubMed - indexed for MEDLINE]Related articlesFree article

    12.

    Functional consequences of neuronal divergence within the retinogeniculate pathway.

    Yeh CI, Stoelzel CR, Weng C, Alonso JM.

    J Neurophysiol. 2009 Apr;101(4):2166-85. Epub 2009 Jan 28.PMID: 19176606 [PubMed - indexed for MEDLINE]Related articles

    13.

    Emergence of order in visual system development.

    Shatz CJ.

    Proc Natl Acad Sci U S A. 1996 Jan 23;93(2):602-8. Review.PMID: 8570602 [PubMed - indexed for MEDLINE]Related articlesFree article

    14.

    The information content of spontaneous retinal waves.

    Butts DA, Rokhsar DS.

    J Neurosci. 2001 Feb 1;21(3):961-73.PMID: 11157082 [PubMed - indexed for MEDLINE]Related articlesFree article

    15.

    High frequency, synchronized bursting drives eye-specific segregation of retinogeniculate projections.

    Torborg CL, Hansen KA, Feller MB.

    Nat Neurosci. 2005 Jan;8(1):72-8. Epub 2004 Dec 19. Erratum in: Nat Neurosci. 2005 Mar;8(3):396. PMID: 15608630 [PubMed - indexed for MEDLINE]Related articlesFree article

    16.

    Loss of binocular responses and reduced retinal convergence during the period of retinogeniculate axon segregation.

    Ziburkus J, Guido W.

    J Neurophysiol. 2006 Nov;96(5):2775-84. Epub 2006 Aug 9.PMID: 16899631 [PubMed - indexed for MEDLINE]Related articlesFree article

    17.

    Retinogeniculate projections following early cerebral hemispherectomy in the vervet monkey.

    Boire D, Théoret H, Herbin M, Casanova C, Ptito M.

    Exp Brain Res. 2000 Dec;135(3):373-81.PMID: 11146816 [PubMed - indexed for MEDLINE]Related articles

    18.

    A neurotrophic model of the development of the retinogeniculocortical pathway induced by spontaneous retinal waves.

    Elliott T, Shadbolt NR.

    J Neurosci. 1999 Sep 15;19(18):7951-70.PMID: 10479696 [PubMed - indexed for MEDLINE]Related articlesFree article

    19.

    Gating of retinal transmission by afferent eye position and movement signals.

    Lal R, Friedlander MJ.

    Science. 1989 Jan 6;243(4887):93-6.PMID: 2911723 [PubMed - indexed for MEDLINE]Related articles

    20.

    Neuronal pentraxins mediate synaptic refinement in the developing visual system.

    Bjartmar L, Huberman AD, Ullian EM, Rentería RC, Liu X, Xu W, Prezioso J, Susman MW, Stellwagen D, Stokes CC, Cho R, Worley P, Malenka RC, Ball S, Peachey NS, Copenhagen D, Chapman B, Nakamoto M, Barres BA, Perin MS.

    J Neurosci. 2006 Jun 7;26(23):6269-81.PMID: 16763034 [PubMed - indexed for MEDLINE]Related articlesFree article

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