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Early surgical decompression restores neurovascular blood flow and ischemic parameters in an in vivo animal model of nerve compression injury
Journal article   Peer reviewed

Early surgical decompression restores neurovascular blood flow and ischemic parameters in an in vivo animal model of nerve compression injury

James Jung, Peter Hahn, Bernard Choi, Tahseen Mozaffar and Ranjan Gupta
Journal of Bone and Joint Surgery, Vol.96(11)
2014

Abstract

Animals Biomarkers Blotting, Western Catalase Decompression, Surgical Disease Models, Animal Hypoxia-Inducible Factor 1, alpha Subunit Ischemia Male Matrix Metalloproteinase 9 Mice Mice, Inbred C57BL Nerve Compression Syndromes Neural Conduction Peripheral Nerve Injuries Sciatic Nerve Up-Regulation catalase gelatinase A gelatinase B hypoxia inducible factor 1alpha superoxide dismutase biological marker catalase gelatinase B Hif1a protein, mouse hypoxia inducible factor 1alpha animal experiment animal model animal tissue article brain electrophysiology camera chronic disease controlled study decompression surgery diode laser early intervention experimental sciatic nerve injury extracellular matrix hyperemia imaging and display in vivo study ischemia laser speckle imaging latent period male mouse mouse model nerve compression nerve conduction neurovascular blood flow nonhuman organ blood flow priority journal time to treatment upregulation animal C57BL mouse complication disease model ischemia metabolism Nerve Compression Syndromes Peripheral Nerve Injuries sciatic nerve vascularization Western blotting

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