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Axonal repair requires proteins that mediate synaptic vesicle fusion
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Repair of plasmalemmal lesions by vesicles
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Barrier permeability at cut axonal ends progressively decreases until an ionic seal is formed
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SEM comparison of severed ends of giant axons isolated from squid (Loligo pealei) and crayfish (Procambarus clarkii)
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Injury-induced vesiculation and membrane redistribution in squid giant axon
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Calpain activity promotes the sealing of severed giant axons
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Godell CM, Smyers ME, Eddleman CS, Ballinger ML, Fishman HM, and Bittner GD. Calpain activity promotes the sealing of severed giant axons. Proc Natl Acad Sci USA 94: 4751-4756, 1997.
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Resealing of transected myelinated mammalian axons in vivo: Evidence for involvement of calpain
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Extent and mechanism of sealing in transected giant axons of squid and earthworms
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Krause TL, Fishman HM, Ballinger ML, and Bittner GD. Extent and mechanism of sealing in transected giant axons of squid and earthworms. J Neurosci 14: 6638-6651, 1994.
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Structural changes at cut ends of earthworm giant axons in the interval between dye barrier formation and neuritic outgrowth
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Lichstein JW, Ballinger ML, Blanchette AR, Fishman HM, and Bittner GD. Structural changes at cut ends of earthworm giant axons in the interval between dye barrier formation and neuritic outgrowth. J Comp Neurol 416: 143-157, 2000.
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Cell membrane resealing by a vesicular mechanism similar to neurotransmitter release
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Mechanisms of calcium and sodium fluxes in anoxic myelinated central nervous system axons
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Calcium dependence of membrane sealing at the cut end of the cockroach giant axon
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