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A Translational Review of Mechanisms of Effectiveness of Photobiomodulation on Somatosensory Neurons and the Peripheral Nervous System-From Molecular Mechanisms to Clinical Applications in Medicine and Dentistry. [PDF]
Chow R, Armati P.
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Mechanisms, translational opportunities for diabetic polyneuropathy. [PDF]
Ong H, Hong M, Zochodne DW.
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Norepinephrine and dopamine sensor crosstalk depends on local innervation density. [PDF]
López RC +9 more
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Mitochondrial Control of Myelination, Bioenergetics, Oxidative Stress, and the Pathogenesis of Optic Neuropathies. [PDF]
Sahibzada H, Malik R, Abu-Amero KK.
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Protocol for induction and quantification of injury-primed axon outgrowth in adult mouse DRG neurons. [PDF]
Seburn E, Hilton BJ.
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Axonal shortening and the mechanisms of axonal motility
Cell Motility, 1988AbstractAxons in tissue culture retract and shorten if their tips are detached from the substrate. The shortening reaction of the axon involves contractile forces that also arise during normal axonal motility, elongation, and retraction. We studied shortening in axonal segments isolated from their parent axons by transecting the axon between the growth
E B, George +3 more
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Journal of Neurocytology, 2000
The myosin super family is an extended family of actin-based motor proteins that can be divided into 15-18 structurally distinct classes (Sellers, J. R (2000) Biochemica et Biophysica Acta, 1496, 3-22; Hodge, T. & Cope, M. J. T. V. (2000) Journal of Cell Science, 113, 3353-3354; Berg, J. S., Powell, B. C. & Cheney, R. E. (2001) Molecular Biology of the
P C, Bridgman, L L, Elkin
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The myosin super family is an extended family of actin-based motor proteins that can be divided into 15-18 structurally distinct classes (Sellers, J. R (2000) Biochemica et Biophysica Acta, 1496, 3-22; Hodge, T. & Cope, M. J. T. V. (2000) Journal of Cell Science, 113, 3353-3354; Berg, J. S., Powell, B. C. & Cheney, R. E. (2001) Molecular Biology of the
P C, Bridgman, L L, Elkin
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Biological Reviews, 1996
Axons damaged in a peripheral nerve are often able to regenerate from the site of injury along the degenerate distal segment of the nerve to reform functional synapses. Schwann cells play a central role in this process. However, in the adult mammalian central nervous system, from which Schwann cells are absent, axonal regeneration does not progress to ...
J E, Brecknell, J W, Fawcett
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Axons damaged in a peripheral nerve are often able to regenerate from the site of injury along the degenerate distal segment of the nerve to reform functional synapses. Schwann cells play a central role in this process. However, in the adult mammalian central nervous system, from which Schwann cells are absent, axonal regeneration does not progress to ...
J E, Brecknell, J W, Fawcett
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Science Signaling, 2023
Demyelination by microglia reduces the likelihood of axonal degeneration in a model of cytotoxic T cell–driven myelin perturbation.
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Demyelination by microglia reduces the likelihood of axonal degeneration in a model of cytotoxic T cell–driven myelin perturbation.
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