The capacity for long-distance axon regeneration and functional recovery after spinal cord injury is poor in mammals but remarkable in some vertebrates, including fish and salamanders. The cellular and molecular basis of this interspecies difference is beginning to emerge. This includes the identification of target cells that react to the injury and the cues directing their pro-regenerative responses. Among existing models of successful spinal cord regeneration, the zebrafish is arguably the most understood at a mechanistic level to date. Here, we review the spinal cord injury paradigms used in zebrafish, and summarize the breadth of neuron-intrinsic and -extrinsic factors that have been identified to play pivotal roles in the ability of ze...
Regenerated cerebrospinal axons are considered to be involved in the spontaneous recovery of swimmin...
The review is an overview of the current knowledge of neuronal regeneration properties in mammals an...
<div><p>Zebrafish can repair their injured brain and spinal cord after injury unlike adult mammalian...
The capacity for long-distance axon regeneration and functional recovery after spinal cord injury is...
Spinal cord injury (SCI) in mammals results in functional deficits that are mostly permanent due in ...
The reversal of spinal cord injury (SCI) and its devastating effect on voluntary control is one of t...
Zebrafish, in contrast to mammals, are capable of functional regeneration after complete transection...
Regenerated cerebrospinal axons are considered to be involved in the spontaneous recovery of swimmin...
Objective(s): To determine the molecular and cellular mechanisms of spinal cord regeneration in zebr...
Injury and degenerative disease of the central nervous system (CNS) are among the major causes for d...
Zebrafish regenerate their spinal cord after injury, both at larval and adult stages. Larval zebrafi...
AbstractZebrafish possess a robust, innate CNS regenerative ability. Combined with their genetic tra...
Unlike mammals, fish motor function can recover within 6-8 weeks after spinal cord injury (SCI). The...
<div><p>Regenerated cerebrospinal axons are considered to be involved in the spontaneous recovery of...
Zebrafish are an effective vertebrate model to study the mechanisms underlying recovery after spinal...
Regenerated cerebrospinal axons are considered to be involved in the spontaneous recovery of swimmin...
The review is an overview of the current knowledge of neuronal regeneration properties in mammals an...
<div><p>Zebrafish can repair their injured brain and spinal cord after injury unlike adult mammalian...
The capacity for long-distance axon regeneration and functional recovery after spinal cord injury is...
Spinal cord injury (SCI) in mammals results in functional deficits that are mostly permanent due in ...
The reversal of spinal cord injury (SCI) and its devastating effect on voluntary control is one of t...
Zebrafish, in contrast to mammals, are capable of functional regeneration after complete transection...
Regenerated cerebrospinal axons are considered to be involved in the spontaneous recovery of swimmin...
Objective(s): To determine the molecular and cellular mechanisms of spinal cord regeneration in zebr...
Injury and degenerative disease of the central nervous system (CNS) are among the major causes for d...
Zebrafish regenerate their spinal cord after injury, both at larval and adult stages. Larval zebrafi...
AbstractZebrafish possess a robust, innate CNS regenerative ability. Combined with their genetic tra...
Unlike mammals, fish motor function can recover within 6-8 weeks after spinal cord injury (SCI). The...
<div><p>Regenerated cerebrospinal axons are considered to be involved in the spontaneous recovery of...
Zebrafish are an effective vertebrate model to study the mechanisms underlying recovery after spinal...
Regenerated cerebrospinal axons are considered to be involved in the spontaneous recovery of swimmin...
The review is an overview of the current knowledge of neuronal regeneration properties in mammals an...
<div><p>Zebrafish can repair their injured brain and spinal cord after injury unlike adult mammalian...