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Imaging Modalities for Biological and Preclinical Research: A Compendium, Volume 2
Preclinical and multimodality imaging
- by
- Matthia Andrea KarremanIgor MeglinskiRobert NusterGuenther PaltaufFelix GremseStefanie RosenhainMezzanotte LauraGaspar NatasaJan GrimmMagdalena SkubalBenedict Mc LarneyClaire LefortCarmel M MoranAdrian JW ThomsonTeodora-Adriana Perles-BarbacaruAngele ViolaThomas HelbichViktoria EhretXin YuPatricia Pais-RoldánKevin BrindleArnaud CommentFelix KreisAdam GauntMaria Gomez-LazaroRuslan HlushchukDavid HaberthürAndré BehrendsAnna BakeneckerAnkit MalhotraFranz WegnerHuimin WeiJonas SchumacherKerstin Lüdtke-BuzugKsenija GräfeMandy AhlborgYvonne Blancke SoaresJan StelznerXin ChenAlexander NeumannThomas FriedrichThorsten BuzugClaudia Kuntner-HannesThomas WanekWolfgang WadsakKarla Palma-AlejandroPaul VerkadeAndreas StylianouAdelaide MirandaAna GómezPieter De BeuleCatarina MouraMichal DykasMichal SarnaWendy McDougaldAdriana TavaresChristian VanhoveJoost C HaeckSandra T. van TielMonique R. BernsenAndreas M. SchmidPrateek KatiyarHaider SamiAlioglu FatihScholda JuliaSingeorzan Karla-NikitaProsche AileenManfred OgrisTavitian BertrandPérez-Liva MailynAlexandra PacureanuCarles Bosch PiñolAndreas SchaeferNataša SladojeJoakim LindbladAlain PitiotStephan WinklerAndreas HaghoferHannah JanoutJaromir GumulecTomas VicarNoeska SmitKatja BühlerAnna VilanovaMartin FalkSérgio FariaFrancisco CunhaJoão ParrachoLucas ThomazPedro AssunçãoArrate Munoz-BaruttiaMartin JonesLucy CollinsonMarco AndreanaAngelika Unterhuber
2021
EN
The relentless pace of innovation in biomedical imaging has provided modern researchers with an unprecedented number of techniques and tools to choose from. While the development of new imaging techniques is vital for ongoing progress in the life sciences, it is challenging for researchers to keep pace. Imaging Modalities for Biological and Preclinical Research is designed to provide a comprehensive overview of currently available biological and preclinical imaging methods, includ...
Supermathematics and its Applications in Statistical Physics
Grassmann Variables and the Method of Supersymmetry
- Series -
- Physics and Astronomy (R0)
2016
EN
This text presents the mathematical concepts of Grassmann variables and the method of supersymmetry to a broad audience of physicists interested in applying these tools to disordered and critical systems, as well as related topics in statistical physics. Based on many courses and seminars held by the author, one of the pioneers in this field, the reader is given a systematic and tutorial introduction to the subject matter.The algebra and analysis of Grassmann variables is presented...
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The Arrows of Time
A Debate in Cosmology
- Series -
- Physics and Astronomy (R0)
2012
EN
The concept of time has fascinated humanity throughout recorded history, and it remains one of the biggest mysteries in science and philosophy. Time is clearly one of the fundamental building blocks of the universe and thus a deeper understanding of nature at a fundamental level also demands a comprehension of time. Furthermore, the origins of the universe are closely intertwined with the puzzle of time: Did time emerge at the Big Bang? Why does the arrow of time ‘conspire’ with the order ...
- Series -
- Physics and Astronomy (R0)
2013
EN
This book gathers together a range of similar problems that can be encountered in different fields of modern quantum physics and that have common features with regard to multilevel quantum systems. The main motivation was to examine from a uniform standpoint various models and approaches that have been developed in atomic, molecular, condensed matter, chemical, laser and nuclear physics in various contexts. The book should help senior-level undergraduate, graduate students and researchers ...
Operators, Geometry and Quanta
Methods of Spectral Geometry in Quantum Field Theory
2011
EN
This book gives a detailed and self-contained introduction into the theory of spectral functions, with an emphasis on their applications to quantum field theory. All methods are illustrated with applications to specific physical problems from the forefront of current research, such as finite-temperature field theory, D-branes, quantum solitons and noncommutativity. In the first part of the book, necessary background information on differential geometry and quantization, including less stan...
Computational Physics
Simulation of Classical and Quantum Systems
- Series -
- Physics and Astronomy (R0)
2013
EN
This textbook presents basic and advanced computational physics in a very didactic style. It contains very-well-presented and simple mathematical descriptions of many of the most important algorithms used in computational physics.The first part of the book discusses the basic numerical methods. The second part concentrates on simulation of classical and quantum systems. Several classes of integration methods are discussed including not only the standard Euler and Runge Kutta method...
Modern Perspectives in Lattice QCD: Quantum Field Theory and High Performance Computing
Lecture Notes of the Les Houches Summer School: Volume 93, August 2009
2011
EN
The book is based on the lectures delivered at the XCIII Session of the École de Physique des Houches, held in August, 2009. The aim of the event was to familiarize the new generation of PhD students and postdoctoral fellows with the principles and methods of modern lattice field theory, which aims to resolve fundamental, non-perturbative questions about QCD without uncontrolled approximations. The emphasis of the book is on the theoretical developments that have shaped the field in the la...
Many-Body Approach to Electronic Excitations
Concepts and Applications
2014
EN
The many-body-theoretical basis and applications of theoretical spectroscopy of condensed matter, e.g. crystals, nanosystems, and molecules are unified in one advanced text for readers from graduate students to active researchers in the field. The theory is developed from first principles including fully the electron-electron interaction and spin interactions. It is based on the many-body perturbation theory, a quantum-field-theoretical description, and Green's functions. The important exp...
Hyperspherical Harmonics Expansion Techniques
Application to Problems in Physics
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- Physics and Astronomy (R0)
2015
EN
The book provides a generalized theoretical technique for solving the fewbody Schrödinger equation. Straight forward approaches to solve it in terms of position vectors of constituent particles and using standard mathematical techniques become too cumbersome and inconvenient when the system contains more than two particles. The introduction of Jacobi vectors, hyperspherical variables and hyperspherical harmonics as an expansion basis is an elegant way to tackle systematically the problem o...
Nuclear Computational Science
A Century in Review
2010
EN
Nuclear engineering has undergone extensive progress over the years. In the past century, colossal developments have been made and with specific reference to the mathematical theory and computational science underlying this discipline, advances in areas such as high-order discretization methods, Krylov Methods and Iteration Acceleration have steadily grown.Nuclear Computational Science: A Century in Review addresses these topics and many more; topics which hold special ties to the ...
Understanding Viscoelasticity
An Introduction to Rheology
- Series -
- Physics and Astronomy (R0)
2012
EN
This book presents an introduction to viscoelasticity; in particular, to the theories of dilute polymer solutions and dilute suspensions of rigid particles in viscous and incompressible fluids. These theories are important, not just because they apply to practical problems of industrial interest, but because they form a solid theoretical base upon which mathematical techniques can be built, from which more complex theories can be constructed, to better mimic material behaviour. The emphasi...
Symmetry Relationships between Crystal Structures
Applications of Crystallographic Group Theory in Crystal Chemistry
2013
EN
In crystal chemistry and crystal physics, the relations between the symmetry groups (space groups) of crystalline solids are of special importance. Part 1 of this book presents the necessary mathematical foundations and tools: the fundamentals of crystallography with special emphasis on symmetry, the theory of the crystallographic groups, and the formalisms of the needed crystallographic computations. Part 2 gives an insight into applications to problems in crystal chemistry. With the aid ...











