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Brain Research|March 5, 2008
Effect of 17beta-estradiol on functional outcome, release of cytokines, astrocyte reactivity and inflammatory spreading after spinal cord injury in male ratsMarie-Françoise Ritz, Oliver N HausmannCurrent Neurovascular Research|October 26, 2011
Necessity for re-vascularization after spinal cord injury and the search for potential therapeutic optionsUrsula Graumann, Marie-Françoise Ritz, Oliver HausmannThe International Journal of Neuroscience|January 6, 2006
Effects of isoflurane on glutamate and taurine releases, brain swelling and injury during transient ischemia and reperfusionMarie-Françoise Ritz, Petra Schmidt, Aminadav MendelowitschBrain Research|September 9, 2004
Acute effects of 17beta-estradiol on the extracellular concentration of excitatory amino acids and energy metabolites during transient cerebral ischemia in male ratsMarie-Françoise Ritz, Petra Schmidt, Aminadav MendelowitschNeurochemical Research|January 8, 2003
17beta-estradiol effect on the extracellular concentration of amino acids in the glutamate excitotoxicity model in the ratMarie-Françoise Ritz, Petra Schmidt, Aminadav MendelowitschBrain Research|September 20, 2008
Acute treatment with red wine polyphenols protects from ischemia-induced excitotoxicity, energy failure and oxidative stress in ratsMarie-Françoise Ritz, Yann Curin, Aminadav Mendelowitsch, et al.Current Neurovascular Research|September 24, 2010
Traumatic spinal cord injury alters angiogenic factors and TGF-beta1 that may affect vascular recoveryMarie-Françoise Ritz, Ursula Graumann, Bertha Gutierrez, et al.Current Neurovascular Research|April 9, 2010
CD133 expressing pericytes and relationship to SDF-1 and CXCR4 in spinal cord injuryUrsula Graumann, Marie-Françoise Ritz, Bertha Gutierrez Rivero, et al.Current Neurovascular Research|January 26, 2012
Gene expression suggests spontaneously hypertensive rats may have altered metabolism and reduced hypoxic toleranceMarie-Françoise Ritz, Caspar Grond-Ginsbach, Stefan Engelter, et al.Current Neurovascular Research|October 29, 2019
Combined Transcriptomic and Proteomic Analyses of Cerebral Frontal Lobe Tissue Identified RNA Metabolism Dysregulation as One Potential Pathogenic Mechanism in Cerebral Autosomal Dominant Arteriopathy with Subcortical Infarcts and Leukoencephalopathy (CADASIL)Marie-Françoise Ritz, Paul Jenoe, Leo Bonati, et al.Pageof 3