Showing results (41-50 of 8,791) with videos related to
Sort By:
Pageof 880
Journal of Cerebral Blood Flow and Metabolism : Official Journal of the International Society of Cerebral Blood Flow and Metabolism|June 11, 2003
Energy metabolism in astrocytes and neurons treated with manganese: relation among cell-specific energy failure, glucose metabolism, and intercellular trafficking using multinuclear NMR-spectroscopic analysisClaudia Zwingmann, Dieter Leibfritz, Alan S HazellGlia|September 8, 2007
Nmr spectroscopic analysis of regional brain energy metabolism in manganese neurotoxicityClaudia Zwingmann, Dieter Leibfritz, Alan S HazellCirculation|May 1, 1976
Parachute accessory anterior mitral valve leaflet causing left ventricular outflow tract obstruction. Report of a case with emphasis on the echocardiographic findingsP Cooperberg, S Hazell, P G AshmoreNeurotoxicology|June 9, 2004
Brain energy metabolism in a sub-acute rat model of manganese neurotoxicity: an ex vivo nuclear magnetic resonance study using [1-13C]glucoseClaudia Zwingmann, Dieter Leibfritz, Alan S HazellMetabolic Brain Disease|June 16, 2014
Role of astrocytes in thiamine deficiencySzeifoul Afadlal, Rémi Labetoulle, Alan S HazellZeitschrift Fur Orthopadie Und Ihre Grenzgebiete|February 1, 1976
[Operative treatment of recurrent dislocation of the patella by Brückner (author's transl)]V Goymann, F BuckNeurochemistry International|January 25, 2011
Loss of the glutamate transporter splice-variant GLT-1b in inferior colliculus and its prevention by ceftriaxone in thiamine deficiencyShivraj S Jhala, Dongmei Wang, Alan S HazellNeurochemistry International|July 14, 1999
Increased expression of glyceraldehyde-3-phosphate dehydrogenase in cultured astrocytes following exposure to manganeseA S Hazell, P Desjardins, R F ButterworthNeuroscience Letters|August 4, 2004
Primary cultures of rat astrocytes respond to thiamine deficiency-induced swelling by downregulating aquaporin-4 levelsHelen Chan, Roger F Butterworth, Alan S HazellNeuroscience Letters|September 2, 1999
Chronic exposure of rat primary astrocyte cultures to manganese results in increased binding sites for the 'peripheral-type' benzodiazepine receptor ligand 3H-PK 11195A S Hazell, P Desjardins, R F ButterworthPageof 880