Published in Anat Rec (Hoboken) on January 01, 2010
Activity-dependent disruption of intersublaminar spaces and ABAKAN expression does not impact functional on and off organization in the ferret retinogeniculate system. Neural Dev (2011) 0.82
Eye-specific retinogeniculate segregation proceeds normally following disruption of patterned spontaneous retinal activity. Neural Dev (2014) 0.80
Specific synaptopathies diversify brain responses and hearing disorders: you lose the gain from early life. Cell Tissue Res (2015) 0.80
Increasing Spontaneous Retinal Activity before Eye Opening Accelerates the Development of Geniculate Receptive Fields. J Neurosci (2015) 0.80
Retinal waves regulate afferent terminal targeting in the early visual pathway. Proc Natl Acad Sci U S A (2015) 0.78
Epibatidine blocks eye-specific segregation in ferret dorsal lateral geniculate nucleus during stage III retinal waves. PLoS One (2015) 0.78
Postnatal development of chorda tympani axons in the rat nucleus of the solitary tract. J Comp Neurol (2012) 0.78
A pyramid approach to subpixel registration based on intensity. IEEE Trans Image Process (1998) 12.57
Mechanisms underlying development of visual maps and receptive fields. Annu Rev Neurosci (2008) 4.00
Architecture and activity-mediated refinement of axonal projections from a mosaic of genetically identified retinal ganglion cells. Neuron (2008) 3.41
Molecular identification of a retinal cell type that responds to upward motion. Nature (2008) 3.28
Competition in retinogeniculate patterning driven by spontaneous activity. Science (1998) 2.92
An instructive role for retinal waves in the development of retinogeniculate connectivity. Neuron (2002) 2.50
Development of precise maps in visual cortex requires patterned spontaneous activity in the retina. Neuron (2005) 2.34
Correlational structure of spontaneous neuronal activity in the developing lateral geniculate nucleus in vivo. Science (1999) 2.33
Failure to maintain eye-specific segregation in nob, a mutant with abnormally patterned retinal activity. Neuron (2006) 2.31
Spontaneous patterned retinal activity and the refinement of retinal projections. Prog Neurobiol (2005) 2.20
Ephrin-as guide the formation of functional maps in the visual cortex. Neuron (2005) 2.19
Structural and functional composition of the developing retinogeniculate pathway in the mouse. Vis Neurosci (2005) 2.15
Diverse receptive fields in the lateral geniculate nucleus during thalamocortical development. Nat Neurosci (2000) 1.92
Retinogeniculate axons undergo eye-specific segregation in the absence of eye-specific layers. J Neurosci (2002) 1.87
Disruption of retinogeniculate afferent segregation by antagonists to NMDA receptors. Nature (1991) 1.81
High frequency, synchronized bursting drives eye-specific segregation of retinogeniculate projections. Nat Neurosci (2004) 1.81
Spontaneous retinal activity mediates development of ocular dominance columns and binocular receptive fields in v1. Neuron (2006) 1.77
Neuronal pentraxins mediate synaptic refinement in the developing visual system. J Neurosci (2006) 1.71
Decoupling eye-specific segregation from lamination in the lateral geniculate nucleus. J Neurosci (2002) 1.45
Unbiased analysis of bulk axonal segregation patterns. J Neurosci Methods (2004) 1.43
Eye-specific retinogeniculate segregation independent of normal neuronal activity. Science (2003) 1.41
Necessity for afferent activity to maintain eye-specific segregation in ferret lateral geniculate nucleus. Science (2000) 1.38
The dorsal lateral geniculate nucleus of the normal ferret and its postnatal development. J Comp Neurol (1981) 1.37
Ephrin-As mediate targeting of eye-specific projections to the lateral geniculate nucleus. Nat Neurosci (2005) 1.32
Anterograde axonal tracing with the subunit B of cholera toxin: a highly sensitive immunohistochemical protocol for revealing fine axonal morphology in adult and neonatal brains. J Neurosci Methods (1996) 1.28
Prenatal development of functional connections in the cat's retinogeniculate pathway. J Neurosci (1984) 1.28
Changing patterns of spontaneous bursting activity of on and off retinal ganglion cells during development. Neuron (1996) 1.26
A precisely timed asynchronous pattern of ON and OFF retinal ganglion cell activity during propagation of retinal waves. Neuron (2008) 1.26
Visual experience before eye-opening and the development of the retinogeniculate pathway. Neuron (2002) 1.23
Loss of binocular responses and reduced retinal convergence during the period of retinogeniculate axon segregation. J Neurophysiol (2006) 1.23
Mechanisms of eye-specific visual circuit development. Curr Opin Neurobiol (2007) 1.18
The role of spontaneous retinal activity before eye opening in the maturation of form and function in the retinogeniculate pathway of the ferret. Vis Neurosci (1999) 1.14
On and off sublaminae in the lateral geniculate nucleus of the ferret. J Neurosci (1983) 1.14
Molecular organization of the ferret visual thalamus. J Neurosci (2004) 1.13
Properties of relay cells in cat's lateral geniculate nucleus: a comparison of W-cells with X- and Y-cells. J Neurophysiol (1976) 1.05
The influence of retinal afferents upon the development of layers in the dorsal lateral geniculate nucleus of mustelids. J Neurosci (1985) 1.05
Projection of the mammalian superior colliculus upon the dorsal lateral geniculate nucleus: organization of tectogeniculate pathways in nineteen species. J Comp Neurol (1991) 1.04
Pattern formation by retinal afferents in the ferret lateral geniculate nucleus: developmental segregation and the role of N-methyl-D-aspartate receptors. J Comp Neurol (1999) 0.97
Mechanisms underlying developmental changes in the firing patterns of ON and OFF retinal ganglion cells during refinement of their central projections. J Neurosci (2001) 0.96
The segregation of ON- and OFF-center responses in the lateral geniculate nucleus of normal and monocularly enucleated ferrets. Vis Neurosci (1993) 0.96
Segregation of ON and OFF retinogeniculate connectivity directed by patterned spontaneous activity. J Neurophysiol (2002) 0.94
The projection of the visual field onto the lateral geniculate nucleus of the ferret. J Comp Neurol (1985) 0.94
Prenatal development of axon outgrowth and connectivity in the ferret visual system. Vis Neurosci (1993) 0.92
Development of the lateral geniculate nucleus: interactions between retinal afferent, cytoarchitectonic, and glial cell process lamination in ferrets and tree shrews. J Comp Neurol (1990) 0.91
Blockade of afferent impulse activity disrupts on/off sublamination in the ferret lateral geniculate nucleus. Brain Res Dev Brain Res (1997) 0.91
Target-specific morphology of retinal axon arbors in the adult hamster. Vis Neurosci (1998) 0.91
The development of the retinogeniculate pathways in normal and albino ferrets. Proc R Soc Lond B Biol Sci (1984) 0.90
Early and rapid targeting of eye-specific axonal projections to the dorsal lateral geniculate nucleus in the fetal macaque. J Neurosci (2005) 0.89
Simple fall-off pattern of correlated neural activity in the developing lateral geniculate nucleus. Nat Neurosci (2006) 0.89
Evidence of W-cell input to the cat's visual cortex via the C laminae of the lateral geniculate nucleus. Brain Res (1975) 0.89
Retinal projections to the subcortical visual system in congenic albino and pigmented rats. Neuroscience (2006) 0.86
Lamination of the dorsal lateral geniculate nucleus in carnivores of the weasel (Mustelidae), raccoon (Procyonidae) and fox (Canidae) families. J Comp Neurol (1974) 0.85
Spontaneous activity of morphologically identified ganglion cells in the developing ferret retina. J Neurosci (2003) 0.83
The effects of monocular enucleation on ganglion cell number and terminal distribution in the ferret's retinal pathway. Eur J Neurosci (1993) 0.82
Role of retinal afferents in regulating growth and shape of the lateral geniculate nucleus. J Comp Neurol (2002) 0.82
Terminal arbors of single ON-center and OFF-center X and Y retinal ganglion cell axons within the ferret's lateral geniculate nucleus. J Comp Neurol (1989) 0.82
Organization of the projection from the superior colliculus to the dorsal lateral geniculate nucleus of the cat. Neuroscience (1981) 0.80
Spatial and temporal properties of visual responses in the thalamus of the developing ferret. J Neurosci (2004) 0.79
Recording and manipulating the in vivo correlational structure of neuronal activity during visual cortical development. J Neurobiol (1999) 0.79
Ventral lateral geniculate nucleus projects to the dorsal lateral geniculate nucleus in the cat. Neuroreport (2005) 0.78
Expression of a keratin sulfate proteoglycan during development of the dorsal lateral geniculate nucleus in the ferret. J Comp Neurol (1994) 0.78
An autoradiographic study of retinogeniculate pathways in the cat and the fox. J Comp Neurol (1974) 0.78
Growth dynamics of the developing lateral geniculate nucleus. J Comp Neurol (2001) 0.78
Relay of visual information to the lateral geniculate nucleus and the visual cortex in albino ferrets. J Comp Neurol (2003) 0.77
Quantitative comparison of retinal synapses in the dorsal and ventral (parvicellular) C laminae of the cat dorsal lateral geniculate nucleus. J Comp Neurol (1986) 0.76
The classical complement cascade mediates CNS synapse elimination. Cell (2007) 9.06
Mechanisms underlying development of visual maps and receptive fields. Annu Rev Neurosci (2008) 4.00
Gabapentin receptor alpha2delta-1 is a neuronal thrombospondin receptor responsible for excitatory CNS synaptogenesis. Cell (2009) 3.46
A proposal for a coordinated effort for the determination of brainwide neuroanatomical connectivity in model organisms at a mesoscopic scale. PLoS Comput Biol (2009) 2.88
Diverse visual features encoded in mouse lateral geniculate nucleus. J Neurosci (2013) 1.95
Spontaneous retinal activity mediates development of ocular dominance columns and binocular receptive fields in v1. Neuron (2006) 1.77
Transgenic mice reveal unexpected diversity of on-off direction-selective retinal ganglion cell subtypes and brain structures involved in motion processing. J Neurosci (2011) 1.77
Neuronal pentraxins mediate synaptic refinement in the developing visual system. J Neurosci (2006) 1.71
Cadherin-6 mediates axon-target matching in a non-image-forming visual circuit. Neuron (2011) 1.67
Decoupling eye-specific segregation from lamination in the lateral geniculate nucleus. J Neurosci (2002) 1.45
Eye-specific retinogeniculate segregation independent of normal neuronal activity. Science (2003) 1.41
Ephrin-As mediate targeting of eye-specific projections to the lateral geniculate nucleus. Nat Neurosci (2005) 1.32
Epibatidine application in vitro blocks retinal waves without silencing all retinal ganglion cell action potentials in developing retina of the mouse and ferret. J Neurophysiol (2008) 1.23
Genetic dissection of retinal inputs to brainstem nuclei controlling image stabilization. J Neurosci (2013) 1.22
Receptive fields and response properties of neurons in layer 4 of ferret visual cortex. J Neurophysiol (2003) 1.14
Dynamics of spontaneous activity in the fetal macaque retina during development of retinogeniculate pathways. J Neurosci (2006) 1.09
Transsynaptic tracing with vesicular stomatitis virus reveals novel retinal circuitry. J Neurosci (2013) 1.02
Interactive visualization of multiresolution image stacks in 3D. Neuroimage (2007) 1.00
Pathway-specific genetic attenuation of glutamate release alters select features of competition-based visual circuit refinement. Neuron (2011) 1.00
The Down syndrome critical region regulates retinogeniculate refinement. J Neurosci (2011) 1.00
Crossed and uncrossed retinal projections to the hamster circadian system. J Comp Neurol (2003) 1.00
Prevalence and predictors of exclusive breastfeeding at hospital discharge. Obstet Gynecol (2012) 0.98
Dendritic and axonal targeting patterns of a genetically-specified class of retinal ganglion cells that participate in image-forming circuits. Neural Dev (2014) 0.95
Emergence of lamina-specific retinal ganglion cell connectivity by axon arbor retraction and synapse elimination. J Neurosci (2010) 0.90
Low-dosage Maximum-A-Posteriori Focusing and Stigmation. Microsc Microanal (2013) 0.90
Gap junctions are essential for generating the correlated spike activity of neighboring retinal ganglion cells. PLoS One (2013) 0.87
Activity-dependent disruption of intersublaminar spaces and ABAKAN expression does not impact functional on and off organization in the ferret retinogeniculate system. Neural Dev (2011) 0.82
Eye-specific retinogeniculate segregation proceeds normally following disruption of patterned spontaneous retinal activity. Neural Dev (2014) 0.80
Milestones and mechanisms for generating specific synaptic connections between the eyes and the brain. Curr Top Dev Biol (2010) 0.79
Effects of early postnatal alcohol exposure on the developing retinogeniculate projections in C57BL/6 mice. Alcohol (2013) 0.77
Mouse mutants for the nicotinic acetylcholine receptor ß2 subunit display changes in cell adhesion and neurodegeneration response genes. PLoS One (2011) 0.77
A population-based cohort study of breastfeeding according to gestational age at term delivery. J Pediatr (2013) 0.76
Visual cognition: rats compare shapes among the crowd. Curr Biol (2012) 0.75
Wiring visual circuits, one eye at a time. Nat Neurosci (2012) 0.75
Mobile Access to ClinicalConnect: A User Feedback Survey on Usability, Productivity, and Quality. JMIR Mhealth Uhealth (2015) 0.75
Grading the thalamus: how can an 'Eph' be excellent? Thalamus Relat Syst (2005) 0.75
Feasibility Study of Interventions to Reduce Medication Omissions Without Documentation: Recall and Check Study. J Nurs Care Qual (2016) 0.75
Reviewing recommendations of root cause analyses. Aust Health Rev (2007) 0.75