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Transgenic plants --- Food --- Agricultural biotechnology --- Aliments --- Biotechnologie agricole --- Environmental aspects --- Safety measures --- Sécurité --- Mesures --- Sécurité --- Environmental aspects. --- Agro-biotechnology --- Biotechnology --- GE crops (Genetically engineered crops) --- GE plants (Genetically engineered plants) --- Genetically engineered crops --- Genetically engineered plants --- Genetically modified crops --- Genetically modified plants --- GM crops (Genetically modified crops) --- GM plants (Genetically modified plants) --- Novel crops --- Transgenic crops --- Plants, Cultivated --- Transgenic organisms --- Plant genetic engineering --- environmental pollution --- Plants, genetically modified --- Crops, agricultural --- Food inspection --- Risk assessment --- Pest control --- Insecticide resistance --- Bioelectric energy sources --- methods
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Pacing and defibrillation have become the leading therapeutic treatments of heart rhythm disorders, including bradycardia and tachycardia. The history of the successful development of bioelectric therapies includes the development of experimental and theoretical methodologies, novel bioengineering approaches and state-of-the-art clinical implantable device therapies. This volume will present a uniform thematic collection of reviews written by the leading basic and applied scientists working in basic bioengineering research laboratories, who have contributed to the development of current understanding of the fundamental mechanisms of pacing and electrophysiology, and who are at the leading edge of further developments in electrotherapy. Igor R. Efimov, Ph.D., is Associate Professor of Biomedical Engineering, Washington University, St. Louis, Missouri. Mark W. Kroll, Ph.D., is Adjunct Professor Biomedical Engineering, California Polytechnic University and University of Minnesota.. Patrick J. Tchou, M.D. is in the Section of Cardiac Electrophysiology and Pacing at the Cleveland Clinic in Cleveland, Ohio. .
Arrhythmias, Cardiac -- therapy. --- Arrhythmias, Cardiac. --- Bioelectric Energy Sources. --- Cardiac Pacing, Artificial. --- Cardiac pacing. --- Cardiovascular instruments, Implanted. --- Defibrillators, Implantable. --- Electric countershock. --- Electrophysiology. --- Electrotherapeutics. --- Heart -- Diseases -- Treatment. --- Heart -- Electric properties. --- Heart. --- Pacemaker, Artificial. --- Cardiovascular instruments, Implanted --- Electrotherapeutics --- Electrophysiology --- Heart --- Cardiac pacing --- Electrodes, Implanted --- Electric Stimulation Therapy --- Heart Diseases --- Defibrillators --- Electrodes --- Prostheses and Implants --- Pathologic Processes --- Electric Power Supplies --- Cardiovascular Diseases --- Therapeutics --- Electrical Equipment and Supplies --- Pathological Conditions, Signs and Symptoms --- Equipment and Supplies --- Analytical, Diagnostic and Therapeutic Techniques and Equipment --- Diseases --- Defibrillators, Implantable --- Electric Countershock --- Arrhythmias, Cardiac --- Bioelectric Energy Sources --- Pacemaker, Artificial --- Cardiac Pacing, Artificial --- Surgery & Anesthesiology --- Medicine --- Health & Biological Sciences --- Surgery - General and By Type --- Electric properties --- Treatment --- Electric properties. --- Treatment. --- Artificial cardiac pacing --- Cardiac pacing, Artificial --- Heart pacing --- Pacing, Cardiac --- Animal electricity --- Bioelectricity --- Electricity, Animal --- Electrobiology --- Electrotherapy --- Faradization --- Implanted cardiovascular instruments --- Medicine. --- Cardiology. --- Medicine & Public Health. --- Arrhythmia --- Electric stimulation --- Electrocardiography --- Neurology --- Physiology --- Electricity --- Electricity in medicine --- Electrostatics --- Physical therapy --- Therapeutics, Physiological --- Neural stimulation --- Biomedical engineering --- Electronics in cardiology --- Implants, Artificial --- Physiological effect --- Internal medicine
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