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Pendharkar, AV; Chua, JY; Wang, N; Gaeta, X; Choi, R; Andres, RH; Guzmann, R (2010). Intraarterial Transplantation Results in Superior Delivery of Neural Stem Cells to the Ischemic Brain in Contrast to Intravenous Infusion. Stroke, p. 3007. Baltimore, Md.: Lippincott Williams & Wilkins
Andres, RH; Guzmann, R; Pendharkar, AV; Bliss, TM; Svendsen, CN; Raabe, A; Wallimann, T; Steinberg, GK; Widmer, HR (2012). Improving Neural Transplantation for Ischemic Stroke: Potential of Creatine Supplementation. In: Annual Meeting of the Swiss Stem Cell Network. Annual Meeting of the Swiss Stem Cell Network
Andres, RH; Pendharkar, AV; Guzmann, R; Svendsen, CN; Widmer, HR; Wallimann, T; Steinberg, GK (2012). Effects of Creatine Supplementation on Neural Progenitor Cells of Murine und Human Origin. In: Annual Meeting of the Swiss Society for Neuroscience. Annual Meeting of the Swiss Society for Neuroscience
Andres, RH; Pendharkar, AV; Guzmann, R; Svendsen, CN; Di Santo, S; Raabe, A; Wallimann, T; Steinberg, GK; Widmer, HR (2011). Creatine improves the metabolic state of murine and human neural stem cells and promotes expansion, migration and neuronal induction. In: Annual Meeting of the Department of Clinical Research. Bern: Annual Meeting of the Department of Clinical Research
Andres, RH; Pendharkar, AV; Guzmann, R; Svendsen, CN; Di Santo, S; Raabe, A; Wallimann, T; Steinberg, GK; Widmer, HR (2011). Effects of Creatine Supplementation on ATP Reserves, Expansion, Migration and Differentiationn of Neural Stem Cells. In: Clinical Neuroscience Meeting. Bern: Clinical Neuroscience Meeting
Andres, RH; Pendharkar, AV; Guzman, R; Bliss, TM; McMillan, E; Svendsen, CN; Raabe, A; Wallimann, T; Widmer, HR; Steinberg, GK (2010). Creatine improves the metabolic state of murine and human neural stem cells and improves expansion and neuronal induction. In: Regen Med (pp. 84-85). Regen Med
Choi, R; Andres, RH; Pendharkar, AV; Wang, N; Gaeta, X; Chua, JY; Nathan, J; Lee, SW; Palmer, TD; Steinberg, GK; Guzmann, R (2010). CCL2-CCR2 signaling is needed for transendothelial migration and subsequent functional recovery after intra-arterial delivery of neutral stem cells in experimentel stroke. In: International Society for Stem Cell Research. San Francisco: International Society for Stem Cell Research