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One or more keywords matched the following properties of Blatter, Lothar
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overview My Scopus ID is 7006641795. My NIH COMMONS name is LBLATTER. Research Areas: Calcium regulation and signaling in the heart and the cardiovascular system, characterization of ion transporters and channels, electrophysiology, excitation-contraction coupling, mitochondrial calcium signaling and energetics, excitation-transcription coupling, and changes in calcium signaling in arrhythmia, hypertrophy and heart failure. My Faculty Profile at Rush University Medical Center: https://www.rushu.rush.edu/faculty/lothar-blatter-md-dr-med My Laboratory: https://www.rushu.rush.edu/research/departmental-research/physiology-and-biophysics-research/laboratory-lothar-blatter-md-dr-med My NCBI Bibliography: https://www.ncbi.nlm.nih.gov/pubmed/?term=blatter+l+a My Scopus: https://www.scopus.com/authid/detail.uri?authorId=7006641795 Education: MD, University of Bern, Switzerland Dr Med, University of Bern, Switzerland
One or more keywords matched the following items that are connected to Blatter, Lothar
Item TypeName
Concept Cell Death
Concept Ventricular Function, Left
Concept Citric Acid Cycle
Concept Ion Transport
Concept Apoptosis
Concept Protein Transport
Concept Ventricular Function
Concept Physical Exertion
Concept Muscle Contraction
Concept Feedback
Concept Blood Pressure
Concept Biological Transport
Concept Cell Physiological Phenomena
Concept Ion Channel Gating
Concept Mitochondria
Concept Gene Expression
Concept Membrane Potentials
Concept Synaptic Transmission
Concept Homeostasis
Concept Pentose Phosphate Pathway
Concept Periodicity
Concept Membrane Potential, Mitochondrial
Concept Cellular Senescence
Concept Oxygen Consumption
Concept Pulse
Concept Action Potentials
Concept Capillary Permeability
Concept Cell Survival
Concept Cell Communication
Concept Autophagy
Concept Biological Clocks
Concept Oxidative Phosphorylation
Concept Cell Respiration
Concept Calcium Signaling
Concept Cell Size
Concept Electron Transport
Concept Drug Resistance, Neoplasm
Concept Cell Membrane Permeability
Concept Cell Compartmentation
Concept Drug Interactions
Concept Energy Metabolism
Concept Diastole
Concept Biological Transport, Active
Concept Transcription, Genetic
Concept Refractory Period, Electrophysiological
Concept Glycolysis
Concept Phenotype
Concept Myocardial Contraction
Concept Neuronal Plasticity
Concept Organ Specificity
Concept Gene Expression Regulation
Concept Enzyme Activation
Concept Male
Concept Atrial Function
Concept Excitation Contraction Coupling
Concept Signal Transduction
Concept Heart Rate
Concept Female
Academic Article Harnessing the Power of Integrated Mitochondrial Biology and Physiology: A Special Report on the NHLBI Mitochondria in Heart Diseases Initiative.
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  • Physiology