AbstractTopographic maps are a fundamental feature of sensory representations in nervous systems. The formation of one such map, defined by the connection of ganglion cells in the retina to their targets in the superior colliculus of the midbrain, is thought to depend upon an interaction between complementary gradients of retinal EphA receptors and collicular ephrin-A ligands. We have tested this hypothesis by using gene targeting to elevate EphA receptor expression in a subset of mouse ganglion cells, thereby producing two intermingled ganglion cell populations that express distinct EphA receptor gradients. We find that these two populations form separate maps in the colliculus, which can be predicted as a function of the net EphA receptor...
EphA tyrosine kinases are thought to act as topographically specific receptors in the well-character...
AbstractEphrin-A5 (AL-1/RAGS), a ligand for Eph receptor tyrosine kinases, repels retinal axons in v...
Genetic hardwiring during brain development provides computational architectures for innate neuronal...
AbstractTopographic maps are a fundamental feature of sensory representations in nervous systems. Th...
Retinal ganglion cells (RGCs) project axons from their cell bodies in the eye to targets in the supe...
AbstractThe EphA3 receptor tyrosine kinase has been implicated in guiding the axons of retinal gangl...
BACKGROUND: In wild-type mice, axons of retinal ganglion cells establish topographically precise pro...
EphA/ephrin-A signaling has been demonstrated to mediate the establishment of the topographic visual...
AbstractRepulsion plays a fundamental role in the establishment of a topographic map of the chick re...
Visual connections to the mammalian forebrain are known to be patterned by neural activity, but it r...
SummaryEphrinAs and EphAs play critical roles during topographic map formation in the retinocollicul...
SummaryDuring development of the retinocollicular projection in mouse, retinal axons initially overs...
Topographic representation of visual fields from the retina to the brain is a central feature of vis...
Background In wild-type mice, axons of retinal ganglion cells establish topographically precise proj...
AbstractThe Eph family is thought to exert its function through the complementary expression of rece...
EphA tyrosine kinases are thought to act as topographically specific receptors in the well-character...
AbstractEphrin-A5 (AL-1/RAGS), a ligand for Eph receptor tyrosine kinases, repels retinal axons in v...
Genetic hardwiring during brain development provides computational architectures for innate neuronal...
AbstractTopographic maps are a fundamental feature of sensory representations in nervous systems. Th...
Retinal ganglion cells (RGCs) project axons from their cell bodies in the eye to targets in the supe...
AbstractThe EphA3 receptor tyrosine kinase has been implicated in guiding the axons of retinal gangl...
BACKGROUND: In wild-type mice, axons of retinal ganglion cells establish topographically precise pro...
EphA/ephrin-A signaling has been demonstrated to mediate the establishment of the topographic visual...
AbstractRepulsion plays a fundamental role in the establishment of a topographic map of the chick re...
Visual connections to the mammalian forebrain are known to be patterned by neural activity, but it r...
SummaryEphrinAs and EphAs play critical roles during topographic map formation in the retinocollicul...
SummaryDuring development of the retinocollicular projection in mouse, retinal axons initially overs...
Topographic representation of visual fields from the retina to the brain is a central feature of vis...
Background In wild-type mice, axons of retinal ganglion cells establish topographically precise proj...
AbstractThe Eph family is thought to exert its function through the complementary expression of rece...
EphA tyrosine kinases are thought to act as topographically specific receptors in the well-character...
AbstractEphrin-A5 (AL-1/RAGS), a ligand for Eph receptor tyrosine kinases, repels retinal axons in v...
Genetic hardwiring during brain development provides computational architectures for innate neuronal...