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Biomaterials|December 18, 2004
Structural parameters of collagen nerve grafts influence peripheral nerve regenerationFelix Stang, Hisham Fansa, Gerald Wolf, et al.Tissue Engineering|July 19, 2006
Peripheral nerve tissue engineering: autologous Schwann cells vs. transdifferentiated mesenchymal stem cellsGerburg Keilhoff, Alexander Goihl, Felix Stang, et al.European Journal of Cell Biology|December 24, 2005
Transdifferentiation of mesenchymal stem cells into Schwann cell-like myelinating cellsGerburg Keilhoff, Alexander Goihl, Kristina Langnäse, et al.Cellular and Molecular Neurobiology|June 17, 2006
Transdifferentiated mesenchymal stem cells as alternative therapy in supporting nerve regeneration and myelinationGerburg Keilhoff, Felix Stang, Alexander Goihl, et al.Muscle & Nerve|March 1, 2005
Successful intramuscular neurotization is dependent on the denervation period. A histomorphological study of the gracilis muscle in ratsGerburg Keilhoff, Hisham FansaRestorative Neurology and Neuroscience|April 3, 2003
Stimulation of Schwann cell proliferation and axonal regeneration by FK 506Hisham Fansa, Gerburg Keilhoff, Thomas Horn, et al.Microsurgery|October 31, 2002
Reconstruction of peripheral nerves using acellular nerve grafts with implanted cultured Schwann cellsOnno Frerichs, Hisham Fansa, Christoph Schicht, et al.Tissue & Cell|August 22, 2021
The Ryanodine receptor stabilizer S107 fails to support motor neuronal neuritogenesis in vitroGerburg Keilhoff, Josephine Pinkernelle, Hisham FansaRestorative Neurology and Neuroscience|May 19, 2012
Vav deficiency impedes peripheral nerve regeneration in miceGerburg Keilhoff, Stefan Wiegand, Hisham FansaExperimental Neurology|May 27, 2008
Minocycline protects Schwann cells from ischemia-like injury and promotes axonal outgrowth in bioartificial nerve grafts lacking Wallerian degenerationGerburg Keilhoff, Lorenz Schild, Hisham FansaPageof 19