Results 321 to 330 of about 261,786 (357)
Deconstruction the feedforward inhibition changes in the layer III of anterior cingulate cortex after peripheral nerve injury. [PDF]
Lian YN+6 more
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Therapeutic Potential of Mesenchymal Stem Cell-Derived Exosomes as Nanomedicine for Peripheral Nerve Injury. [PDF]
Li Q, Zhang F, Fu X, Han N.
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GCPII Inhibition Promotes Remyelination after Peripheral Nerve Injury in Aged Mice. [PDF]
Su Y+8 more
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The Physiologic Basis of Molecular Therapeutics for Peripheral Nerve Injury: A Primer. [PDF]
Spezia MC, Dy CJ, Brogan DM.
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TFEB/3 Govern Repair Schwann Cell Generation and Function Following Peripheral Nerve Injury. [PDF]
Patel AA+15 more
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Isolated Radial Nerve Palsy in a Newborn Due to a Congenital Myofibroma: A Rare Case of Peripheral Nerve Injury. [PDF]
Chiellino S+3 more
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Iatropathic injuries of peripheral nerves [PDF]
This is a retrospective study of 612 cases of iatropathic injury to peripheral nerves seen in one tertiary referral unit between 1991 and 1998. A total of 291 patients was subsequently operated on to explore the nerve lesion. The most common presenting symptom was pain, which often masked underlying loss of function.
R. Khan, R. Birch
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Current Opinion in Neurology, 1994
Knowledge of the actions of conventional neurotrophic factors on peripheral neurons is accumulating rapidly, and growth factors that were discovered outside the nervous system have been found to have neurotrophic actions. The nature and initiation of proximal neuronal responses to nerve injury, the interactions of Schwann cells and growth cones, and ...
D. B. Clarke, Peter Richardson
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Knowledge of the actions of conventional neurotrophic factors on peripheral neurons is accumulating rapidly, and growth factors that were discovered outside the nervous system have been found to have neurotrophic actions. The nature and initiation of proximal neuronal responses to nerve injury, the interactions of Schwann cells and growth cones, and ...
D. B. Clarke, Peter Richardson
openaire +3 more sources