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Orvosi Hetilap|April 19, 2000
[Nephropathy in non-insulin-dependent (type-2) diabetes mellitus]J Nagy, I WittmannActa Physiologica Hungarica|January 1, 1990
Redox agents modulate a(K+)0 changes evoked by acetylcholine and adrenaline in frog heartA Puppi, I Wittmann, M DelyActa Physiologica Academiae Scientiarum Hungaricae|January 1, 1982
Relationship between the tissue redox state potential and dak/dt changes of [K+]0 activity during k-strophantoside or acetylcholine induced contracturesI Wittmann, A Puppi, M DelyMedical Science Monitor : International Medical Journal of Experimental and Clinical Research|February 24, 2001
Prevalence, course and risk factors of diabetic nephropathy in type-2 diabetes mellitusM Molnár, I Wittmann, J NagyChemico-Biological Interactions|January 1, 1987
Changes in autorhythmic heart frequency elicited by redox agentsI Wittmann, A Puppi, M DelyGeneral Pharmacology|January 1, 1982
Redox state potential influences (+/-) delta [Na+]o activity values during acetylcholine contractures of frog skeletal musclesA Puppi, I Wittmann, M DelyGeneral Physiology and Biophysics|April 1, 1986
Inverse modulation of extracellular Na+- and K+-activities by ascorbate or methylene blueA Puppi, I Wittmann, M DelyActa Physiologica Hungarica|January 1, 1989
Effect of ionic milieu to the free radicals generated by phenizine methosulphate (PMS)T Past, I Wittmann, J Belágyi, et al.Diabetologia|December 6, 1997
Possible role of free radicals generated by pseudohypoxia in the regulation of hepatic glucose output. An in vitro model using rat liver microsomal glucose 6-phosphataseI Wittmann, I Mazák, L Wagner, et al.Pageof 5