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This book gathers relatively recent and significant topics in the field of ion channel research. Ion channels form the molecular basis for membrane excitability in cells from the cardiovascular and nervous systems. In many non-excitable cells, ion channels contribute to diverse function including secretion of signaling compounds like hormones and insulin, cell volume regulation, intracellular signaling especially Ca2+ signaling, etc. Many human diseases have been attributed to abnormal channel functions and defective membrane expression of channel proteins. On the other hand, ion channels are excellent models for studying protein biophysics, especially the allosteric regulation of protein function by miscellaneous stimuli. Therefore, researches on ion channels carry significant meaning for the understanding of basic protein biophysics and diverse physiological functions and for developing novel and effective treatment for related human diseases. This book could provide graduates and scientists in both basic and clinical levels, a comprehensive understanding of cutting-edge advances and a useful and stimulating platform for tackling their own questions about ion channels.
Histology. Cytology --- Biology --- Human physiology --- celmembranen --- biologie --- fysiologie --- Ion channels. --- Ion channels --- Canals iònics --- Biologia --- Fisiologia --- Research --- Methodology.
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This book is a compilation of selected papers from the 8th International Multidisciplinary Conference on Optofluidics (IMCO 2018) held in Shanghai on August 5-8, 2018, as well as papers from the IMCO 2019 held in Hong Kong on June 14-17, 2019. The work focuses on the current development in the fields of optofluidics, microfluidics, silicon photonics, optical metamaterials and other related areas. Readers from both academia and industry will benefit from the experts’ opinion and the lasted development in the multidisciplinary field of optofluidics.
Lasers. --- Photonics. --- Optical materials. --- Electronic materials. --- Materials science. --- Nanotechnology. --- Amorphous substances. --- Complex fluids. --- Optics, Lasers, Photonics, Optical Devices. --- Optical and Electronic Materials. --- Materials Science, general. --- Nanotechnology and Microengineering. --- Soft and Granular Matter, Complex Fluids and Microfluidics. --- Complex liquids --- Fluids, Complex --- Amorphous substances --- Liquids --- Soft condensed matter --- Molecular technology --- Nanoscale technology --- High technology --- Material science --- Physical sciences --- Electronic materials --- Optics --- Materials --- New optics --- Light amplification by stimulated emission of radiation --- Masers, Optical --- Optical masers --- Light amplifiers --- Light sources --- Optoelectronic devices --- Nonlinear optics --- Optical parametric oscillators
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This book is a compilation of selected papers from the 8th International Multidisciplinary Conference on Optofluidics (IMCO 2018) held in Shanghai on August 5-8, 2018, as well as papers from the IMCO 2019 held in Hong Kong on June 14-17, 2019. The work focuses on the current development in the fields of optofluidics, microfluidics, silicon photonics, optical metamaterials and other related areas. Readers from both academia and industry will benefit from the experts' opinion and the lasted development in the multidisciplinary field of optofluidics.
Fluid mechanics --- Optics. Quantum optics --- Matter physics --- Chemistry of complexes --- Materials sciences --- Electronics --- materiaalkennis --- complexen (chemie) --- lasers (technologie) --- materialen (technologie) --- microwaves --- vloeistoffen
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Despite the recent development and interest in the photonics of metallic wire structures, the relatively simple concepts and physics often remain obscured or poorly explained to those who do not specialize in the field. Electromagnetic Behaviour of Metallic Wire Structures provides a clear and coherent guide to understanding these phenomena without excessive numerical calculations. Including both background material and detailed derivations of the various different formulae applied, Electromagnetic Behaviour of Metallic Wire Structures describes how to extend basic circuit theory relating to voltages, currents, and resistances of metallic wire networks to include situations where the currents are no longer spatially uniform along the wire. This lays a foundation for a deeper understanding of the many new phenomena observed in meta-electromagnetic materials. Examples of applications are included to support this new approach making Electromagnetic Behaviour of Metallic Wire Structures a comprehensive and self-contained volume suitable for use by specialists, non-specialist, researchers and professionals in other relevant fields and even students.
Electromagnetic waves. --- Engineering. --- Metals -- Electric properties. --- Metals -- Magnetic properties. --- Electrical & Computer Engineering --- Engineering & Applied Sciences --- Electrical Engineering --- Metals --- Electromagnetic energy --- Electromagnetic radiation --- Electric properties. --- Magnetic properties. --- Magnetism. --- Magnetic materials. --- Electronic circuits. --- Optical materials. --- Electronic materials. --- Circuits and Systems. --- Optical and Electronic Materials. --- Magnetism, Magnetic Materials. --- Electromagnetic theory --- Waves --- Systems engineering. --- Mathematical physics --- Physics --- Electricity --- Magnetics --- Optics --- Materials --- Engineering systems --- System engineering --- Engineering --- Industrial engineering --- System analysis --- Design and construction --- Electronic materials --- Electron-tube circuits --- Electric circuits --- Electron tubes --- Electronics
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Histology. Cytology --- Biology --- Human physiology --- celmembranen --- biologie --- fysiologie --- Ion channels. --- Ion channels --- Research --- Methodology. --- Channels, Ion --- Biological transport, Active --- Ion-permeable membranes --- Membrane proteins --- Canals iònics --- Biologia --- Fisiologia
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Despite the recent development and interest in the photonics of metallic wire structures, the relatively simple concepts and physics often remain obscured or poorly explained to those who do not specialize in the field. Electromagnetic Behaviour of Metallic Wire Structures provides a clear and coherent guide to understanding these phenomena without excessive numerical calculations. Including both background material and detailed derivations of the various different formulae applied, Electromagnetic Behaviour of Metallic Wire Structures describes how to extend basic circuit theory relating to voltages, currents, and resistances of metallic wire networks to include situations where the currents are no longer spatially uniform along the wire. This lays a foundation for a deeper understanding of the many new phenomena observed in meta-electromagnetic materials. Examples of applications are included to support this new approach making Electromagnetic Behaviour of Metallic Wire Structures a comprehensive and self-contained volume suitable for use by specialists, non-specialist, researchers and professionals in other relevant fields and even students.
Optics. Quantum optics --- Electromagnetism. Ferromagnetism --- Electronics and optics of solids --- Electrical engineering --- Applied physical engineering --- ingenieurswetenschappen --- magnetisme --- transistoren --- halfgeleiders --- elektrische circuits --- microwaves
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Fluid mechanics --- Optics. Quantum optics --- Matter physics --- Chemistry of complexes --- Materials sciences --- Electronics --- materiaalkennis --- complexen (chemie) --- lasers (technologie) --- materialen (technologie) --- microwaves --- vloeistoffen
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