The glia that reside at the midline of the Drosophila CNS are an important embryonic signaling center and also wrap the axons that cross the CNS. The development of the midline glia (MG) is characterized by migration, ensheathment, subdivision of axon commissures, apoptosis, and the extension of glial processes. All of these events are characterized by cell-cell contact between MG and adjacent neurons. Cell adhesion and signaling proteins that mediate different aspects of MG development and MG-neuron interactions have been identified. This provides a foundation for ultimately obtaining an integrated picture of how the MG assemble into a characteristic axonal support structure in the CNS
AbstractThe Drosophila CNS midline cells constitute a specialized set of interneurons, motorneurons,...
The Drosophila CNS midline cells constitute a specialized set of interneurons, motorneurons, and gli...
Glia are well known for providing essential physical and metabolic support to neurons, as well as re...
The glia that reside at the midline of the Drosophila CNS are an important embryonic signaling cente...
The Drosophila CNS midline glia (MG) are multifunctional cells that ensheath and provide trophic sup...
The Drosophila CNS contains a variety of glia, including highly specialized glia that reside at the ...
AbstractThe Drosophila CNS midline glia (MG) are multifunctional cells that ensheath and provide tro...
The Drosophila CNS midline glia (MG) are multifunctional cells that ensheath and provide trophic sup...
Glia play crucial roles in ensheathing axons, a process that requires an intricate series of glia-ne...
Understanding the generation of neuronal and glial diversity is one of the major goals of developmen...
AbstractThe midline glia are specialized, nonneuronal cells at the midline of the Drosophila central...
AbstractUnderstanding the generation of neuronal and glial diversity is one of the major goals of de...
Glial cells are critical players in every major aspect of nervous system development, function, and ...
The study of how transcriptional control and cell signaling influence neurons and glia to acquire th...
AbstractThe development ofDrosophilamidline glia during larval and pupal stages was characterized by...
AbstractThe Drosophila CNS midline cells constitute a specialized set of interneurons, motorneurons,...
The Drosophila CNS midline cells constitute a specialized set of interneurons, motorneurons, and gli...
Glia are well known for providing essential physical and metabolic support to neurons, as well as re...
The glia that reside at the midline of the Drosophila CNS are an important embryonic signaling cente...
The Drosophila CNS midline glia (MG) are multifunctional cells that ensheath and provide trophic sup...
The Drosophila CNS contains a variety of glia, including highly specialized glia that reside at the ...
AbstractThe Drosophila CNS midline glia (MG) are multifunctional cells that ensheath and provide tro...
The Drosophila CNS midline glia (MG) are multifunctional cells that ensheath and provide trophic sup...
Glia play crucial roles in ensheathing axons, a process that requires an intricate series of glia-ne...
Understanding the generation of neuronal and glial diversity is one of the major goals of developmen...
AbstractThe midline glia are specialized, nonneuronal cells at the midline of the Drosophila central...
AbstractUnderstanding the generation of neuronal and glial diversity is one of the major goals of de...
Glial cells are critical players in every major aspect of nervous system development, function, and ...
The study of how transcriptional control and cell signaling influence neurons and glia to acquire th...
AbstractThe development ofDrosophilamidline glia during larval and pupal stages was characterized by...
AbstractThe Drosophila CNS midline cells constitute a specialized set of interneurons, motorneurons,...
The Drosophila CNS midline cells constitute a specialized set of interneurons, motorneurons, and gli...
Glia are well known for providing essential physical and metabolic support to neurons, as well as re...