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H A FINK

Showing results (11-20 of 98) with videos related to

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Biochimica Et Biophysica Acta|December 25, 2013
MD simulations of the central pore of ryanodine receptors and sequence comparison with 2B protein from coxsackie virusRoman Schilling, Rainer H A Fink, Wolfgang B Fischer
Biophysical Reviews|May 17, 2017
New factors contributing to dynamic calcium regulation in the skeletal muscle triad-a crowded placeOliver Friedrich, Rainer H A Fink, Frederic von Wegner
Journal of Molecular Modeling|January 20, 2016
Interaction of ions with the luminal sides of wild-type and mutated skeletal muscle ryanodine receptorsRoman Schilling, Rainer H A Fink, Wolfgang B Fischer
Advances in Experimental Medicine and Biology|March 29, 2012
Simulation strategies for calcium microdomains and calcium-regulated calcium channelsFrederic von Wegner, Nicolas Wieder, Rainer H A Fink
Frontiers in Physiology|October 21, 2015
Localized nuclear and perinuclear Ca(2+) signals in intact mouse skeletal muscle fibersTihomir Georgiev, Mikhail Svirin, Enrique Jaimovich, et al.
Journal of Muscle Research and Cell Motility|August 10, 2006
Elementary Ca2+ release events in mammalian skeletal muscle: effects of the anaesthetic drug thiopentalF v Wegner, M Both, R H A Fink, et al.
IEEE Transactions on Medical Imaging|July 26, 2007
Fast XYT imaging of elementary calcium release events in muscle with multifocal multiphoton microscopy and wavelet denoising and detectionFrederic Von Wegner, Martin Both, Rainer H A Fink, et al.
The Journal of Membrane Biology|August 13, 2002
Membrane ion conductances of mammalian skeletal muscle in the post-decompression state after high-pressure treatmentO Friedrich, K R Kress, H Ludwig, et al.
Journal of Neurophysiology|May 23, 2003
Muscarinic and nicotinic ACh receptor activation differentially mobilize Ca2+ in rat intracardiac ganglion neuronsFriederike Beker, Martin Weber, Rainer H A Fink, et al.
British Journal of Pharmacology|March 14, 2007
NA+- and K+-channels as molecular targets of the alkaloid ajmaline in skeletal muscle fibresO Friedrich, F V Wegner, M Wink, et al.
Pageof 10

Showing results (11-20 of 98) with videos related to

Sort By:
Pageof 10
Biochimica Et Biophysica Acta|December 25, 2013
MD simulations of the central pore of ryanodine receptors and sequence comparison with 2B protein from coxsackie virusRoman Schilling, Rainer H A Fink, Wolfgang B Fischer
Biophysical Reviews|May 17, 2017
New factors contributing to dynamic calcium regulation in the skeletal muscle triad-a crowded placeOliver Friedrich, Rainer H A Fink, Frederic von Wegner
Journal of Molecular Modeling|January 20, 2016
Interaction of ions with the luminal sides of wild-type and mutated skeletal muscle ryanodine receptorsRoman Schilling, Rainer H A Fink, Wolfgang B Fischer
Advances in Experimental Medicine and Biology|March 29, 2012
Simulation strategies for calcium microdomains and calcium-regulated calcium channelsFrederic von Wegner, Nicolas Wieder, Rainer H A Fink
Frontiers in Physiology|October 21, 2015
Localized nuclear and perinuclear Ca(2+) signals in intact mouse skeletal muscle fibersTihomir Georgiev, Mikhail Svirin, Enrique Jaimovich, et al.
Journal of Muscle Research and Cell Motility|August 10, 2006
Elementary Ca2+ release events in mammalian skeletal muscle: effects of the anaesthetic drug thiopentalF v Wegner, M Both, R H A Fink, et al.
IEEE Transactions on Medical Imaging|July 26, 2007
Fast XYT imaging of elementary calcium release events in muscle with multifocal multiphoton microscopy and wavelet denoising and detectionFrederic Von Wegner, Martin Both, Rainer H A Fink, et al.
The Journal of Membrane Biology|August 13, 2002
Membrane ion conductances of mammalian skeletal muscle in the post-decompression state after high-pressure treatmentO Friedrich, K R Kress, H Ludwig, et al.
Journal of Neurophysiology|May 23, 2003
Muscarinic and nicotinic ACh receptor activation differentially mobilize Ca2+ in rat intracardiac ganglion neuronsFriederike Beker, Martin Weber, Rainer H A Fink, et al.
British Journal of Pharmacology|March 14, 2007
NA+- and K+-channels as molecular targets of the alkaloid ajmaline in skeletal muscle fibresO Friedrich, F V Wegner, M Wink, et al.
Pageof 10