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Journal of Integrative Neuroscience|January 20, 2015
Conducting processes in simulated chronic inflammatory demyelinating polyneuropathy at 20°C-42°CD I Stephanova, M Daskalova, M MladenovJournal of Integrative Neuroscience|March 23, 2011
The aqueous layers within the myelin sheath modulate the membrane properties of simulated hereditary demyelinating neuropathiesD I Stephanova, S M Krustev, M DaskalovaClinical Neurophysiology : Official Journal of the International Federation of Clinical Neurophysiology|April 14, 2005
Differences in potentials and excitability properties in simulated cases of demyelinating neuropathies. Part ID I Stephanova, M Daskalova, A S AlexandrovJournal of Integrative Neuroscience|March 23, 2011
The myelin sheath aqueous layers improve the membrane properties of simulated chronic demyelinating neuropathiesD I Stephanova, S M Krustev, N Negrev, et al.Biological Cybernetics|January 1, 1990
Conduction along myelinated and demyelinated nerve fibres with a reorganized axonal membrane during the recovery cycle: model investigationsD I StephanovaBiological Cybernetics|April 28, 2001
Myelin as longitudinal conductor: a multi-layered model of the myelinated human motor nerve fibreD I StephanovaBiological Cybernetics|January 1, 1989
Model investigations of the temperature dependence of demyelinated and reorganized axonal membraneD I StephanovaBiological Cybernetics|January 1, 1988
The effect of temperature on a simulated systematically paranodally demyelinated nerve fiberD I StephanovaBiological Cybernetics|January 1, 1989
Conduction along myelinated and demyelinated nerve fibres during the recovery cycle: model investigationsD I StephanovaBiological Cybernetics|January 1, 1987
Mathematical analysis of the changes in the parameters of the action potentials, membrane and ionic currents of frog muscle fibre during the recovery cycleD I StephanovaPageof 5