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Astrocyte progenitor transplantation promotes regeneration of bulbospinal respiratory axons, recovery of diaphragm function, and a reduced macrophage response following cervical spinal cord injury.
Goulão M, Ghosh B, Urban MW, Sahu M, Mercogliano C, Charsar BA, Komaravolu S, Block CG, Smith GM, Wright MC, Lepore AC. Goulão M, et al. Among authors: ghosh b. Glia. 2019 Mar;67(3):452-466. doi: 10.1002/glia.23555. Epub 2018 Dec 11. Glia. 2019. PMID: 30548313 Free PMC article.
AAV2-BDNF promotes respiratory axon plasticity and recovery of diaphragm function following spinal cord injury.
Charsar BA, Brinton MA, Locke K, Chen AY, Ghosh B, Urban MW, Komaravolu S, Krishnamurthy K, Smit R, Pasinelli P, Wright MC, Smith GM, Lepore AC. Charsar BA, et al. Among authors: ghosh b. FASEB J. 2019 Dec;33(12):13775-13793. doi: 10.1096/fj.201901730R. Epub 2019 Oct 2. FASEB J. 2019. PMID: 31577916 Free PMC article.
These findings show that targeting circuit plasticity mechanisms involving the enhancement of synaptic inputs from spared axon populations is a powerful strategy for restoring respiratory function post-SCI.-Charsar, B. A., Brinton, M. A., Locke, K., Chen, A. Y., Ghosh
These findings show that targeting circuit plasticity mechanisms involving the enhancement of synaptic inputs from spared axon populations i …
1,472 results