<p>Change in expression of neurite inhibitory and axon growth/guidance genes in rostral spinal cord 24 h following spinal cord injury at P28. Note that most of the myelin inhibitory factor genes have not changed their expression in response to injury (fold <2).</p
“Neuroplasticity” is often evoked to explain adaptation and compensation after acute lesions of the ...
Molecular mechanisms that regulate axonal regrowth after injury or disease in the central nervous sy...
Changes in gene expression have been measured 24 h after injury to mammalian spinal cords that can a...
<p>Genes that changed most in expression (±≥10 FOLD) 24 h following spinal cord injury at P28.</p
<p>Change in expression of channel, synapse, neural receptor, actin, myosin and related genes 24 h f...
<p>Change in expression of extracellular matrix (ECM) factor genes 24 h following spinal cord injury...
<p>(A-B) The number of genes differentially expressed (A, upregulated or B, downregulated) at 1 or 3...
<p>All but two of these genes (Timp1 and Stxbp2) were in the immune/inflammatory category. The magni...
<p>The (A) bar graph and (B) charts show that a huge number of genes were differentially expressed i...
<p>Semi-quantitative RT-PCR was employed to evaluate mRNA expression of several genes involved in de...
Spinal cord injury in higher vertebrates causes paralysis because injured neurons in the adult cent...
Spinal cord injury leads to severe problems involving impaired motor, sensory, and autonomic functio...
<p>Numbers of genes in each functional category that showed ±≥2 fold change compared to uninjured ag...
Copyright © 2018 L. R. Galieva et al. Spinal cord injury (SCI) unavoidably results in death of not o...
Gene therapies are being developed which seek to repair the spinal cord and give patients back their...
“Neuroplasticity” is often evoked to explain adaptation and compensation after acute lesions of the ...
Molecular mechanisms that regulate axonal regrowth after injury or disease in the central nervous sy...
Changes in gene expression have been measured 24 h after injury to mammalian spinal cords that can a...
<p>Genes that changed most in expression (±≥10 FOLD) 24 h following spinal cord injury at P28.</p
<p>Change in expression of channel, synapse, neural receptor, actin, myosin and related genes 24 h f...
<p>Change in expression of extracellular matrix (ECM) factor genes 24 h following spinal cord injury...
<p>(A-B) The number of genes differentially expressed (A, upregulated or B, downregulated) at 1 or 3...
<p>All but two of these genes (Timp1 and Stxbp2) were in the immune/inflammatory category. The magni...
<p>The (A) bar graph and (B) charts show that a huge number of genes were differentially expressed i...
<p>Semi-quantitative RT-PCR was employed to evaluate mRNA expression of several genes involved in de...
Spinal cord injury in higher vertebrates causes paralysis because injured neurons in the adult cent...
Spinal cord injury leads to severe problems involving impaired motor, sensory, and autonomic functio...
<p>Numbers of genes in each functional category that showed ±≥2 fold change compared to uninjured ag...
Copyright © 2018 L. R. Galieva et al. Spinal cord injury (SCI) unavoidably results in death of not o...
Gene therapies are being developed which seek to repair the spinal cord and give patients back their...
“Neuroplasticity” is often evoked to explain adaptation and compensation after acute lesions of the ...
Molecular mechanisms that regulate axonal regrowth after injury or disease in the central nervous sy...
Changes in gene expression have been measured 24 h after injury to mammalian spinal cords that can a...