脊髄損傷後に指の器用さ回復、サルで抗体治療に成功. 京都大学プレスリリース. 2018-01-09.Axons in the mature mammalian central nervous system have only a limited capacity to grow/regenerate after injury, and spontaneous recovery of motor functions is therefore not greatly expected in spinal cord injury (SCI). To promote functional recovery after SCI, it is critical that corticospinal tract (CST) fibers reconnect properly with target spinal neurons through enhanced axonal growth/regeneration. Here, we applied antibody treatment against repulsive guidance molecule-a (RGMa) to a monkey model of SCI. We found that inhibition of upregulated RGMa around the lesioned site in the cervical cord resulted in recovery from impaired manual dexterity by accentuated penetration of CST fibers i...
In rodents and nonhuman primates subjected to spinal cord lesion, neutralizing the neurite growth in...
AbstractIn adult macaque monkeys subjected to an incomplete spinal cord injury (SCI), corticospinal ...
After injury, regrowth of axons in mammalian adult central nervous system is highly limited. However...
Repetitive transcranial magnetic stimulation (rTMS) targeting the primary motor cortex (MI) is expec...
Spinal cord injury (SCI) is a devastating condition characterized by loss of function, secondary to ...
Spinal cord injury (SCI) is a devastating condition characterized by loss of function, secondary to ...
In relation to mechanisms involved in functional recovery of manual dexterity from cervical cord inj...
AbstractThis is a review of our investigations into the neuronal mechanisms of functional recovery a...
In rodents and nonhuman primates subjected to spinal cord lesion, neutralizing the neurite growth in...
In rodents and nonhuman primates subjected to spinal cord lesion, neutralizing the neurite growth in...
International audienceNo curative treatment is available for any deficits induced by spinal cord inj...
Although axonal regeneration after CNS injury is limited, partial injury is frequently accompanied b...
While axonal regeneration after CNS injury is limited, partial injury is frequently accompanied by e...
In spinal cord injured adult mammals, neutralizing the neurite growth inhibitor Nogo-A with antibodi...
In spinal cord injured adult mammals, neutralizing the neurite growth inhibitor Nogo‐A with antibodi...
In rodents and nonhuman primates subjected to spinal cord lesion, neutralizing the neurite growth in...
AbstractIn adult macaque monkeys subjected to an incomplete spinal cord injury (SCI), corticospinal ...
After injury, regrowth of axons in mammalian adult central nervous system is highly limited. However...
Repetitive transcranial magnetic stimulation (rTMS) targeting the primary motor cortex (MI) is expec...
Spinal cord injury (SCI) is a devastating condition characterized by loss of function, secondary to ...
Spinal cord injury (SCI) is a devastating condition characterized by loss of function, secondary to ...
In relation to mechanisms involved in functional recovery of manual dexterity from cervical cord inj...
AbstractThis is a review of our investigations into the neuronal mechanisms of functional recovery a...
In rodents and nonhuman primates subjected to spinal cord lesion, neutralizing the neurite growth in...
In rodents and nonhuman primates subjected to spinal cord lesion, neutralizing the neurite growth in...
International audienceNo curative treatment is available for any deficits induced by spinal cord inj...
Although axonal regeneration after CNS injury is limited, partial injury is frequently accompanied b...
While axonal regeneration after CNS injury is limited, partial injury is frequently accompanied by e...
In spinal cord injured adult mammals, neutralizing the neurite growth inhibitor Nogo-A with antibodi...
In spinal cord injured adult mammals, neutralizing the neurite growth inhibitor Nogo‐A with antibodi...
In rodents and nonhuman primates subjected to spinal cord lesion, neutralizing the neurite growth in...
AbstractIn adult macaque monkeys subjected to an incomplete spinal cord injury (SCI), corticospinal ...
After injury, regrowth of axons in mammalian adult central nervous system is highly limited. However...