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 #  AuthorTitleAccn#YearItem Type Claims
31 Chung, Shin-Ho Biological Membrane Ion Channels I06820 2007 eBook  
32 Noy, Aleksandr Handbook of Molecular Force Spectroscopy I06804 2008 eBook  
33 Koonin, Eugene V Power Laws, Scale-Free Networks and Genome Biology I06757 2006 eBook  
34 Geddes, Chris D Glucose Sensing I06752 2006 eBook  
35 Cicco, Giuseppe Oxygen Transport to Tissue XXVII I06737 2006 eBook  
36 Teng, Quincy Structural Biology I06694 2005 eBook  
37 Kurzynski, Michal The Thermodynamic Machinery of Life I06609 2006 eBook  
38 Mateo, C.Reyes Protein-Lipid Interactions I06538 2006 eBook  
39 Martinac, Boris Sensing with Ion Channels I06215 2008 eBook  
40 N??lting, Bengt Methods in Modern Biophysics I06193 2006 eBook  
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31.    
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TitleBiological Membrane Ion Channels : Dynamics, Structure, and Applications
Author(s)Chung, Shin-Ho;Anderson, Olaf S;Krishnamurthy, Vikram V
PublicationNew York, NY, Springer New York, 2007.
DescriptionXIV, 658 p. 168 illus : online resource
Abstract NoteIon channels are biological nanotubes that are formed by membrane proteins. Because ion channels regulate all electrical activities in living cells, understanding their mechanisms at a molecular level is a fundamental problem in biology. This book deals with recent breakthroughs in ion-channel research that have been brought about by the combined effort of experimental biophysicists and computational physicists, who together are beginning to unravel the story of these exquisitely designed biomolecules. With chapters by leading experts, the book is aimed at researchers in nanodevices and biosensors, as well as advanced undergraduate and graduate students in biology and the physical sciences. Key Features Presents the latest information on the molecular mechanisms of ion permeation through membrane ion channels Uses schematic diagrams to illustrate important concepts in biophysics Written by leading researchers in the area of ion channel investigations
ISBN,Price9780387689197
Keyword(s)1. Animal Biochemistry 2. BIOCHEMISTRY 3. Biological and Medical Physics, Biophysics 4. BIOLOGICAL PHYSICS 5. Biomedical engineering 6. Biomedical Engineering and Bioengineering 7. BIOPHYSICS 8. Biotechnology 9. EBOOK 10. EBOOK - SPRINGER 11. NEUROBIOLOGY 12. Neurosciences
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32.     
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TitleHandbook of Molecular Force Spectroscopy
Author(s)Noy, Aleksandr
PublicationNew York, NY, Springer US, 2008.
DescriptionXII, 300 p. 150 illus : online resource
Abstract Note"...Noy's Handbook of Molecular Force Spectroscopy is both a timely and useful summary of fundamental aspects of molecular force spectroscopy, and I believe it would make a worthwhile addition to any good scientific library. New research groups that are entering this field would be well advisedto study this handbook in detail before venturing into the exciting and challenging world of molecular force spectroscopy." Matthew F. Paige, University of Saskatchewan, Journal of the American Chemical Society Modern materials science and biophysics are increasingly focused on studying and controlling intermolecular interactions on the single-molecule level. Molecular force spectroscopy was developed in the past decade as the result of several unprecedented advances in the capabilities of modern scientific instrumentation, and defines a number of techniques that use mechanical force measurements to study interactions between single molecules and molecular assemblies in chemical and biological systems. Examples of these techniques, which typically target a specific range of experimental systems and geometries, include atomic force microscopy, optical tweezers, surface forces apparatus, and magnetic tweezers. With contributions by internationally renowned scientists, Handbook of Molecular Force Spectroscopy is a comprehensive, state-of-the-art review of modern force spectroscopy, including fundamentals of intermolecular forces, technical aspects of the force measurements, and practical applications. The Handbook presents reviews of fundamental physical concepts of loading single and multiple chemical bonds on the nanometer scale, covers practical aspects of modern single-molecule level techniques, and describes several representative applications of force spectroscopy to the study of chemical and biological processes. Computer modeling of force spectroscopy experiments is addressed as well. In sum, this volume is an authoritative guide to planning, understanding, and analyzing modern molecular force spectroscopy experiments with an emphasis on biophysical research
ISBN,Price9780387499895
Keyword(s)1. BIOCHEMISTRY 2. Biochemistry, general 3. Biological and Medical Physics, Biophysics 4. BIOLOGICAL PHYSICS 5. BIOPHYSICS 6. EBOOK 7. EBOOK - SPRINGER 8. Interfaces (Physical sciences) 9. MICROSCOPY 10. NANOTECHNOLOGY 11. SOLID STATE PHYSICS 12. SPECTROSCOPY 13. Spectroscopy and Microscopy 14. Surface and Interface Science, Thin Films 15. Surfaces (Physics) 16. THIN FILMS
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33.     
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TitlePower Laws, Scale-Free Networks and Genome Biology
Author(s)Koonin, Eugene V;Wolf, Yuri;Karev, Georgy
PublicationNew York, NY, Springer US, 2006.
DescriptionXVI, 258 p : online resource
Abstract NotePower Laws, Scale-free Networks and Genome Biology deals with crucial aspects of the theoretical foundations of systems biology, namely power law distributions and scale-free networks which have emerged as the hallmarks of biological organization in the post-genomic era. The chapters in the book not only describe the interesting mathematical properties of biological networks but moves beyond phenomenology, toward models of evolution capable of explaining the emergence of these features. The collection of chapters, contributed by both physicists and biologists, strives to address the problems in this field in a rigorous but not excessively mathematical manner and to represent different viewpoints, which is crucial in this emerging discipline. Each chapter includes, in addition to technical descriptions of properties of biological networks and evolutionary models, a more general and accessible introduction to the respective problems. Most chapters emphasize the potential of theoretical systems biology for discovery of new biological phenomena
ISBN,Price9780387339160
Keyword(s)1. BIOCHEMISTRY 2. Biochemistry, general 3. BIOINFORMATICS 4. Biological and Medical Physics, Biophysics 5. BIOLOGICAL PHYSICS 6. BIOPHYSICS 7. EBOOK 8. EBOOK - SPRINGER 9. Microbial genetics 10. Microbial Genetics and Genomics 11. Microbial genomics 12. PHYSICS 13. Physics, general 14. Proteomics
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34.     
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TitleGlucose Sensing
Author(s)Geddes, Chris D;Lakowicz, Joseph R
PublicationNew York, NY, Springer US, 2006.
DescriptionXX, 442 p : online resource
Abstract NoteTopics in Fluorescence Spectroscopy, Glucose Sensing is the eleventh volume in the popular series Topics in Fluorescence Spectroscopy, edited by Drs. Chris D. Geddes and Joseph R. Lakowicz. This volume incorporates authoritative analytical fluorescence-based glucose sensing reviews specialized enough to be attractive to professional researchers, yet also appealing to the wider audience of scientists in related disciplines of fluorescence. Glucose Sensing is an essential reference for any lab working in the analytical fluorescence glucose sensing field. All academics, bench scientists, and industry professionals wishing to take advantage of the latest and greatest in the continuously emerging field of glucose sensing, and diabetes care & management, will find this volume an invaluable resource. Topics in Fluorescence Spectroscopy Volume 11, Glucose Sensing Chapters include: Implantable Sensors for Interstitial Fluid Smart Tattoo Glucose Sensors Optical Enzyme-based Glucose Biosensors Plasmonic Glucose Sensing The Glucose Binding Protein for Sensing Fluorescent TICT Sensors for Saccharides Contact Lenses for Ophthalmic Glucose Monitoring About the Editors: Dr Chris D. Geddes is Professor of Fluorescence Spectroscopy, Director of the Institute of Fluorescence, and Associate Director of the Center for Fluorescence Spectroscopy at the University of Maryland Biotechnology Institute, Medical Biotechnology Center, Baltimore, USA. He is the Editor-in-Chief of the Journal of Fluorescence and both the Editor-in-Chief and Founding Editor of the Journal Plasmonics, The Who's Who in Fluorescence, Reviews in Fluorescence and Reviews in Plasmonics annual volumes, as well as Executive Director of the Society of Fluorescence. Dr Geddes has published over 120 scientific articles, papers, review articles, books and book chapters on the principles and applications of fluorescence. Dr Joseph R. Lakowicz is Professor of Biochemistry at the University of Maryland School of Medicine, Baltimore, and Director of the Center for Fluorescence Spectroscopy. Dr. Lakowicz has published over 400 scientific articles, has edited numerous books, holds 16 issued patents, and is the author of the widely used text Principles of Fluorescence Spectroscopy now in its 3rd edition.
ISBN,Price9780387330150
Keyword(s)1. Analytical chemistry 2. BIOCHEMISTRY 3. Biochemistry, general 4. Biological and Medical Physics, Biophysics 5. BIOLOGICAL PHYSICS 6. Biomedical engineering 7. Biomedical Engineering and Bioengineering 8. BIOPHYSICS 9. Biotechnology 10. EBOOK 11. EBOOK - SPRINGER
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35.     
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TitleOxygen Transport to Tissue XXVII
Author(s)Cicco, Giuseppe;Bruley, Duane F;Ferrari, Marc
PublicationNew York, NY, Springer US, 2006.
DescriptionXXV, 390 p : online resource
Abstract NoteProceedings of the 32nd scientific meeting of the International Society on Oxygen Transport to Tissue (ISOTT) in Bari, Italy, August 21-26, 2004
ISBN,Price9780387295404
Keyword(s)1. ANATOMY 2. BIOCHEMISTRY 3. Biochemistry, general 4. Biological and Medical Physics, Biophysics 5. BIOLOGICAL PHYSICS 6. BIOPHYSICS 7. CELL BIOLOGY 8. EBOOK 9. EBOOK - SPRINGER 10. Human anatomy
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36.     
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TitleStructural Biology : Practical NMR Applications
Author(s)Teng, Quincy
PublicationNew York, NY, Springer US, 2005.
DescriptionXII, 295 p : online resource
Abstract NoteOver the years since NMR was first applied to solve problems in structural biology, it has undergonedramaticdevelopmentsinbothNMRinstrumenthardwareandmethodology. While it is established that NMR is one of the most powerful tools for understanding biological p- cesses at the atomic level, it has become increasingly difficult for authors and instructors to make valid decisions concerning the content and level for a graduate course of NMR in str- turalbiology. BecausemanyofthedetailsinpracticalNMRarenotdocumentedsystematically, students entering the field have to learn the experiments and methods through communication with other experienced students or experts. Often such a learning process is incomplete and unsystematic. This book is meant to be not only a textbook, but also a handbook for those who routinely use NMR to study various biological systems. Thus, the book is organized with experimentalists in mind, whether they are instructors or students. For those who have a little or no background in NMR structural biology, it is hoped that this book will provide sufficient perspective and insight. Those who are already experienced in NMR research may find new information or different methods that are useful to their research. Because understanding fundamental principles and concepts of NMR spectroscopy is essential for the application of NMR methods to research projects, the book begins with an introduction to basic NMR principles. While detailed mathematics and quantum mechanics dealing with NMR theory have been addressed in several well-known NMR books, Chapter 1 illustrates some of the fundamental principles and concepts of NMR spectroscopy in a more descriptiveandstraightforwardmanner
ISBN,Price9780387243689
Keyword(s)1. BIOCHEMISTRY 2. Biochemistry, general 3. Biological and Medical Physics, Biophysics 4. BIOLOGICAL PHYSICS 5. BIOPHYSICS 6. Biotechnology 7. EBOOK 8. EBOOK - SPRINGER
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37.     
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TitleThe Thermodynamic Machinery of Life
Author(s)Kurzynski, Michal
PublicationBerlin, Heidelberg, Springer Berlin Heidelberg, 2006.
DescriptionXIV, 431 p. 150 illus : online resource
Abstract NoteLiving organisms are open thermodynamic systems whose functional structure has developed and been kinetically frozen during the historical process of biological evolution. A thermodynamics of both nonequilibrium and complex systems is needed for their description. In this book, the foundations of such a thermodynamics are presented. Biological processes at the cellular level are considered as coupled chemical reactions and transport processes across internal and the cytoplasmic membrane. All these processes are catalyzed by specific enzymes hence the kinetics of enzymatic catalysis and its control are described here in detail. The coupling of several processes through a common enzyme is considered in the context of free energy or signal transduction. Special attention is paid to evidence for a rich stochastic internal dynamics of native proteins and its possible role in the control of enzyme activity and in the action of biological molecular machines
ISBN,Price9783540336549
Keyword(s)1. BIOCHEMISTRY 2. Biochemistry, general 3. Biological and Medical Physics, Biophysics 4. BIOLOGICAL PHYSICS 5. BIOPHYSICS 6. CELL BIOLOGY 7. EBOOK 8. EBOOK - SPRINGER 9. ORGANIC CHEMISTRY 10. THERMODYNAMICS
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38.     
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TitleProtein-Lipid Interactions : New Approaches and Emerging Concepts
Author(s)Mateo, C.Reyes;G??mez, Javier;Villala??n, Jos??;Gonz??lez Ros, Jos?? Manuel
PublicationBerlin, Heidelberg, Springer Berlin Heidelberg, 2006.
DescriptionXIV, 235 p : online resource
Abstract NoteBiological membranes have long been identified as key elements in a wide variety of cellular processes including cell defense communication, photosynthesis, signal transduction, and motility; thus they emerge as primary targets in both basic and applied research. This book brings together in a single volume the most recent views of experts in the area of protein???lipid interactions, providing an overview of the advances that have been achieved in the field in recent years, from very basic aspects to specialized technological applications. Topics include the application of X-ray and neutron diffraction, infrared and fluorescence spectroscopy, and high-resolution NMR to the understanding of the specific interactions between lipids and proteins within biological membranes, their structural relationships, and the implications for the biological functions that they mediate. Also covered in this volume are the insertion of proteins and peptides into the membrane and the concomitant formation of definite lipid domains within the membrane
ISBN,Price9783540284352
Keyword(s)1. BIOCHEMISTRY 2. Biochemistry, general 3. Biological and Medical Physics, Biophysics 4. BIOLOGICAL PHYSICS 5. Bioorganic Chemistry 6. BIOPHYSICS 7. CELL BIOLOGY 8. EBOOK 9. EBOOK - SPRINGER
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39.     
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TitleSensing with Ion Channels
Author(s)Martinac, Boris
PublicationBerlin, Heidelberg, Springer Berlin Heidelberg, 2008.
DescriptionXXIII, 304 p : online resource
Abstract NoteAll living cells are able to detect and translate environmental stimuli into biologically meaningful signals. Sensations of touch, hearing, sight, taste, smell or pain are essential to the survival of all living organisms. The importance of sensory input for the existence of life thus justifies the effort made to understand its molecular origins. Sensing with Ion Channels focuses on ion channels as key molecules enabling biological systems to sense and process the physical and chemical stimuli that act upon cells in their living environment. Its aim is to serve as a reference to ion channel specialists and as a source of new information to non specialists who want to learn about the structural and functional diversity of ion channels and their role in sensory physiology
ISBN,Price9783540727392
Keyword(s)1. BIOCHEMISTRY 2. Biochemistry, general 3. Biological and Medical Physics, Biophysics 4. BIOLOGICAL PHYSICS 5. Bioorganic Chemistry 6. BIOPHYSICS 7. CELL BIOLOGY 8. EBOOK 9. EBOOK - SPRINGER
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I06215     On Shelf    

40.    
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TitleMethods in Modern Biophysics
Author(s)N??lting, Bengt
PublicationBerlin, Heidelberg, Springer Berlin Heidelberg, 2006.
DescriptionXVI, 257 p. 267 illus : online resource
Abstract NoteIncorporating recent dramatic advances, this textbook presents a fresh and timely introduction to modern biophysical methods. An array of new, faster and higher-power biophysical methods now enables scientists to examine the mysteries of life at a molecular level. This innovative text surveys and explains the ten key biophysical methods, including those related to biophysical nanotechnology, scanning probe microscopy, X-ray crystallography, ion mobility spectrometry, mass spectrometry, proteomics, and protein folding and structure. Incorporating much information previously unavailable in tutorial form, N??lting employs worked examples and 267 illustrations to fully detail the techniques and their underlying mechanisms. Methods in Modern Biophysics is written for advanced undergraduate and graduate students, postdocs, researchers, lecturers and professors in biophysics, biochemistry and related fields. Special features in the 2nd edition: ??? Illustrates the high-resolution methods for ultrashort-living protein structures and new results for 6 proteins. ??? Provides information on self-evolving computer programs - a method for the solution of extremely complex phenomena
ISBN,Price9783540277040
Keyword(s)1. BIOCHEMISTRY 2. Biochemistry, general 3. Biological and Medical Physics, Biophysics 4. BIOLOGICAL PHYSICS 5. Bioorganic Chemistry 6. BIOPHYSICS 7. Biotechnology 8. EBOOK 9. EBOOK - SPRINGER 10. MEDICINE 11. Medicine/Public Health, general 12. PHYSICAL CHEMISTRY
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