Background: The axons of retinal ganglion neurons from a precise topographic map in the optic tectum in the midbrain, and the guidance of retinal axons by directional cues in the tectum is crucial in this process. Several in vitro systems have been developed in order to identify the molecular basis of these directional cues. Temporal, but not nasal, retinal axons avoid posterior tectal membranes and grow on anterior membranes as a result of repellent guidance activities that are linked by glycosylphosphatidylinositol (GPI) anchors to the posterior membranes. A putative GPI-anchored repulsive guidance molecule with a molecular weight of 33 kDa has previously been characterized. Indirect results from experiments in vitro support the hypothesi...
AbstractTopographic maps, which maintain the spatial order of neurons in the order of their axonal c...
In order to navigate through the surrounding environment many mammals, including humans, primarily r...
A prominent feature of nervous systems is the organization of synapses into discrete layers, or lami...
AbstractBackground The axons of retinal ganglion neurons form a precise topographic map in the optic...
Axons rely on guidance cues to reach remote targets during nervous system development(1). A well-stu...
In the retinotectal projection, nasal retinal axons project to posterior tectum, while temporal axon...
Temporal retinal axons growing in vitro on carpets of tectal membranes are deflected by cell membran...
AbstractThe results of previous in vitro experiments indicate that a glycosylphosphatidylinositol (G...
The results of previous in vitro experiments indicate that a glycosylphosphatidylinositol (GPI)-anch...
Although molecular gradients have long been postulated to play a role in the development of topograp...
Important information about the mechanisms of axon guidance in the developing and regenerating brain...
Spatial gradients of axon guiding molecules have long been suspected to provide positional and direc...
1. On a substrate consisting of alternating lanes of anterior and posterior tectal membranes, tempor...
Spatial gradients of axon guiding molecules have long been suspected to provide positional and direc...
The developing visual system has proven to be one of the most informative models for studying axon g...
AbstractTopographic maps, which maintain the spatial order of neurons in the order of their axonal c...
In order to navigate through the surrounding environment many mammals, including humans, primarily r...
A prominent feature of nervous systems is the organization of synapses into discrete layers, or lami...
AbstractBackground The axons of retinal ganglion neurons form a precise topographic map in the optic...
Axons rely on guidance cues to reach remote targets during nervous system development(1). A well-stu...
In the retinotectal projection, nasal retinal axons project to posterior tectum, while temporal axon...
Temporal retinal axons growing in vitro on carpets of tectal membranes are deflected by cell membran...
AbstractThe results of previous in vitro experiments indicate that a glycosylphosphatidylinositol (G...
The results of previous in vitro experiments indicate that a glycosylphosphatidylinositol (GPI)-anch...
Although molecular gradients have long been postulated to play a role in the development of topograp...
Important information about the mechanisms of axon guidance in the developing and regenerating brain...
Spatial gradients of axon guiding molecules have long been suspected to provide positional and direc...
1. On a substrate consisting of alternating lanes of anterior and posterior tectal membranes, tempor...
Spatial gradients of axon guiding molecules have long been suspected to provide positional and direc...
The developing visual system has proven to be one of the most informative models for studying axon g...
AbstractTopographic maps, which maintain the spatial order of neurons in the order of their axonal c...
In order to navigate through the surrounding environment many mammals, including humans, primarily r...
A prominent feature of nervous systems is the organization of synapses into discrete layers, or lami...