Lucia Galli-Resta. Trends Neurosci 2002
Times Cited: 28
Times Cited: 28
Times Cited
Times Co-cited
Similarity
53
The mosaic of nerve cells in the mammalian retina.
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46
Dynamic microtubule-dependent interactions position homotypic neurones in regular monolayered arrays during retinal development.
Lucia Galli-Resta, Elena Novelli, Alessandro Viegi. Development 2002
Lucia Galli-Resta, Elena Novelli, Alessandro Viegi. Development 2002
39
Clonal expansion and cell dispersion in the developing mouse retina.
B E Reese, B D Necessary, P P Tam, B Faulkner-Jones, S S Tan. Eur J Neurosci 1999
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35
Spatial order within but not between types of retinal neurons.
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35
Local, possibly contact-mediated signalling restricted to homotypic neurons controls the regular spacing of cells within the cholinergic arrays in the developing rodent retina.
L Galli-Resta. Development 2000
L Galli-Resta. Development 2000
32
Lateral cell movement driven by dendritic interactions is sufficient to form retinal mosaics.
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32
Determinants of the exclusion zone in dopaminergic amacrine cell mosaics.
Mary A Raven, Stephen J Eglen, John J Ohab, Benjamin E Reese. J Comp Neurol 2003
Mary A Raven, Stephen J Eglen, John J Ohab, Benjamin E Reese. J Comp Neurol 2003
32
Radial and tangential dispersion patterns in the mouse retina are cell-class specific.
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B E Reese, A R Harvey, S S Tan. Proc Natl Acad Sci U S A 1995
32
Vertebrate neural cell-fate determination: lessons from the retina.
F J Livesey, C L Cepko. Nat Rev Neurosci 2001
F J Livesey, C L Cepko. Nat Rev Neurosci 2001
28
Spatial properties of retinal mosaics: an empirical evaluation of some existing measures.
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28
The density recovery profile: a method for the analysis of points in the plane applicable to retinal studies.
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28
Activity-regulated cell death contributes to the formation of ON and OFF alpha ganglion cell mosaics.
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28
Modelling the mosaic organization of rod and cone photoreceptors with a minimal-spacing rule.
L Galli-Resta, E Novelli, Z Kryger, G H Jacobs, B E Reese. Eur J Neurosci 1999
L Galli-Resta, E Novelli, Z Kryger, G H Jacobs, B E Reese. Eur J Neurosci 1999
25
25
The role of tangential dispersion in retinal mosaic formation.
Benjamin E Reese, Lucia Galli-Resta. Prog Retin Eye Res 2002
Benjamin E Reese, Lucia Galli-Resta. Prog Retin Eye Res 2002
25
The major cell populations of the mouse retina.
C J Jeon, E Strettoi, R H Masland. J Neurosci 1998
C J Jeon, E Strettoi, R H Masland. J Neurosci 1998
21
21
Development of A-type (axonless) horizontal cells in the rabbit retina.
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21
Afferents and homotypic neighbors regulate horizontal cell morphology, connectivity, and retinal coverage.
Benjamin E Reese, Mary A Raven, Stephanie B Stagg. J Neurosci 2005
Benjamin E Reese, Mary A Raven, Stephanie B Stagg. J Neurosci 2005
21
Retinal ganglion cell type, size, and spacing can be specified independent of homotypic dendritic contacts.
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21
Generating neuronal diversity in the retina: one for nearly all.
Till Marquardt, Peter Gruss. Trends Neurosci 2002
Till Marquardt, Peter Gruss. Trends Neurosci 2002
17
Horizontal cell density and mosaic regularity in pigmented and albino mouse retina.
Mary A Raven, Benjamin E Reese. J Comp Neurol 2002
Mary A Raven, Benjamin E Reese. J Comp Neurol 2002
17
Assembling the vertebrate retina: global patterning from short-range cellular interactions.
L Galli-Resta. Neuroreport 2001
L Galli-Resta. Neuroreport 2001
33
The topographical relationship between two neuronal mosaics in the short wavelength-sensitive system of the primate retina.
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17
Developmental patterning of rod and cone photoreceptors in embryonic zebrafish.
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17
Multipotential stem cells and progenitors in the vertebrate retina.
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14
Neurogenesis in the retinal ganglion cell layer of the rat.
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14
Math5 is required for retinal ganglion cell and optic nerve formation.
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14
Stratification of ON and OFF ganglion cell dendrites depends on glutamate-mediated afferent activity in the developing retina.
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14
Mosaic regularity of horizontal cells in the mouse retina is independent of cone photoreceptor innervation.
Mary A Raven, Benjamin E Reese. Invest Ophthalmol Vis Sci 2003
Mary A Raven, Benjamin E Reese. Invest Ophthalmol Vis Sci 2003
15
Retinal organization in the bcl-2-overexpressing transgenic mouse.
Enrica Strettoi, Maila Volpini. J Comp Neurol 2002
Enrica Strettoi, Maila Volpini. J Comp Neurol 2002
14
Patterning the vertebrate retina: the early appearance of retinal mosaics.
L Galli-Resta. Semin Cell Dev Biol 1998
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15
The spatial organization of cholinergic mosaics in the adult mouse retina.
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16
Activity-dependent regulation of dendritic growth and patterning.
Rachel O L Wong, Anirvan Ghosh. Nat Rev Neurosci 2002
Rachel O L Wong, Anirvan Ghosh. Nat Rev Neurosci 2002
14
Cell-type specific dendritic contacts between retinal ganglion cells during development.
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14
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14
Spatial density and distribution of choline acetyltransferase immunoreactive cells in human, macaque, and baboon retinas.
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14
Retinal ganglion cells with NADPH-diaphorase activity in the chick form a regular mosaic with a strong dorsoventral asymmetry that can be modelled by a minimal spacing rule.
A Cellerino, E Novelli, L Galli-Resta. Eur J Neurosci 2000
A Cellerino, E Novelli, L Galli-Resta. Eur J Neurosci 2000
22
Influence of cell fate mechanisms upon retinal mosaic formation: a modelling study.
Stephen J Eglen, David J Willshaw. Development 2002
Stephen J Eglen, David J Willshaw. Development 2002
14
Cellular patterns in the inner retina of adult zebrafish: quantitative analyses and a computational model of their formation.
David A Cameron, Laurel H Carney. J Comp Neurol 2004
David A Cameron, Laurel H Carney. J Comp Neurol 2004
22
Neuronal death induced by endogenous extracellular ATP in retinal cholinergic neuron density control.
Valentina Resta, Elena Novelli, Francesco Di Virgilio, Lucia Galli-Resta. Development 2005
Valentina Resta, Elena Novelli, Francesco Di Virgilio, Lucia Galli-Resta. Development 2005
14
A common progenitor for neurons and glia persists in rat retina late in development.
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14
The development of the pattern of retinal ganglion cells in the chick retina: mechanisms that control differentiation.
K L McCabe, E C Gunther, T A Reh. Development 1999
K L McCabe, E C Gunther, T A Reh. Development 1999
14
Developmental improvement in the regularity and packing of mouse horizontal cells: implications for mechanisms underlying mosaic pattern formation.
Mary A Raven, Stephanie B Stagg, Hadi Nassar, Benjamin E Reese. Vis Neurosci 2005
Mary A Raven, Stephanie B Stagg, Hadi Nassar, Benjamin E Reese. Vis Neurosci 2005
16
Co-cited is the co-citation frequency, indicating how many articles cite the article together with the query article. Similarity is the co-citation as percentage of the times cited of the query article or the article in the search results, whichever is the lowest. These numbers are calculated for the last 100 citations when articles are cited more than 100 times.