AbstractPrevious studies suggest that sensory axon outgrowth is guided by motoneurons, which are specified to innervate particular target muscles. Here we present evidence that questions this conclusion. We have used a new approach to assess the pathfinding abilities of bona fide sensory neurons, first by eliminating motoneurons after neural crest cells have coalesced into dorsal root ganglia (DRG) and second by challenging sensory neurons to innervate muscles in a novel environment created by shifting a limb bud rostrally. The resulting sensory innervation patterns mapped with the lipophilic dyes DiI and DiA showed that sensory axons projected robustly to muscles in the absence of motoneurons, if motoneurons were eliminated after DRG forma...
The hindbrain of the chick embryo contains three classes of motor neurons: somatic, visceral, and br...
AbstractIt is now well documented that motoneurons are specified to innervate particular target musc...
AbstractDuring development, motor and sensory axons grow to peripheral targets with remarkable preci...
Chick sensory neurons grow to their correct targets in the hindlimb from the outset during normal de...
Previous studies suggest that sensory innervation of muscles is patterned by motor innervation. Musc...
The dorsal ramus nerve diverges dorsally from each spinal nerve to innervate the epaxial muscle and ...
Motoneurones that supply the vertebrate limb innervate their muscle targets in a highly reproducible...
In the chick, sensory neurons grow to their segmentally appropriate target sites in the hindlimb fro...
AbstractIn some developing systems, growing axons are attracted to their target site by a diffusible...
The role of the dermamyotome (the dorsal portion of the somite which gives rise to muscles and dermi...
Targets in limb regions of the chick embryo are further removed from the dorsal root ganglia that in...
AbstractIn the developing chick hindlimb, pathfinding by sensory axons is affected by their interact...
A considerable challenge confronts, any developing neuron. Before it can establish a functional and ...
AbstractIn the developing chick hindlimb, pathfinding by sensory axons is affected by their interact...
The development of patterned axon outgrowth and dorsal root ganglion (DRG) formation was examined af...
The hindbrain of the chick embryo contains three classes of motor neurons: somatic, visceral, and br...
AbstractIt is now well documented that motoneurons are specified to innervate particular target musc...
AbstractDuring development, motor and sensory axons grow to peripheral targets with remarkable preci...
Chick sensory neurons grow to their correct targets in the hindlimb from the outset during normal de...
Previous studies suggest that sensory innervation of muscles is patterned by motor innervation. Musc...
The dorsal ramus nerve diverges dorsally from each spinal nerve to innervate the epaxial muscle and ...
Motoneurones that supply the vertebrate limb innervate their muscle targets in a highly reproducible...
In the chick, sensory neurons grow to their segmentally appropriate target sites in the hindlimb fro...
AbstractIn some developing systems, growing axons are attracted to their target site by a diffusible...
The role of the dermamyotome (the dorsal portion of the somite which gives rise to muscles and dermi...
Targets in limb regions of the chick embryo are further removed from the dorsal root ganglia that in...
AbstractIn the developing chick hindlimb, pathfinding by sensory axons is affected by their interact...
A considerable challenge confronts, any developing neuron. Before it can establish a functional and ...
AbstractIn the developing chick hindlimb, pathfinding by sensory axons is affected by their interact...
The development of patterned axon outgrowth and dorsal root ganglion (DRG) formation was examined af...
The hindbrain of the chick embryo contains three classes of motor neurons: somatic, visceral, and br...
AbstractIt is now well documented that motoneurons are specified to innervate particular target musc...
AbstractDuring development, motor and sensory axons grow to peripheral targets with remarkable preci...