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21 Shukla, Ashutosh Kumar Medical Imaging Methods I08983 2019 eBook  
22 Im, Chang-Hwan Computational EEG Analysis I08859 2018 eBook  
23 Jaeschke, Eberhard J Synchrotron Light Sources and Free-Electron Lasers I08720 2020 eBook  
24 Astratov, Vasily Label-Free Super-Resolution Microscopy I08679 2019 eBook  
25 Miroshnichenko, L.I Radiation Hazard in Space I11552 2003 eBook  
26 Sebbah, P Waves and Imaging through Complex Media I11540 2001 eBook  
27 Hua Lee Acoustical Imaging I10884 2002 eBook  
28 Srivastava, Ramesh C Shock Focussing Effect in Medical Science and Sonoluminescence I10713 2003 eBook  
29 Maev, Roman Gr Acoustical Imaging I10594 2002 eBook  
30 Gu, Min Advanced Optical Imaging Theory I10552 2000 eBook  
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21.    
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TitleMedical Imaging Methods : Recent Trends
Author(s)Shukla, Ashutosh Kumar
PublicationSingapore, Springer Singapore, 2019.
DescriptionXI, 141 p. 45 illus., 27 illus. in color : online resource
Abstract NoteThis book provides insights into current radiology practices in diagnostic imaging, discussing specific features of individual imaging techniques, such as sensitivity, specificity and accuracy and signal-to-noise ratio. It includes chapters on various established imaging methods as well as emerging methods such as EPR imaging, and their applications in the diagnosis of skin cancer, brain tumors, oral diseases and kidney cysts. Adopting a bottom-up approach and presenting the recent trends in a simple manner with the help of examples, the book appeals to a wide audience, including academics, researchers, medical and nursing students, as well as healthcare professionals in the field of imaging and radiology
ISBN,Price9789811391217
Keyword(s)1. Diagnostic Radiology 2. EBOOK 3. EBOOK - SPRINGER 4. Medical and Radiation Physics 5. Medical physics 6. RADIATION 7. Radiology
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22.     
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TitleComputational EEG Analysis : Methods and Applications
Author(s)Im, Chang-Hwan
PublicationSingapore, Springer Singapore, 2018.
DescriptionXII, 228 p. 59 illus., 36 illus. in color : online resource
Abstract NoteThis book introduces and reviews all of the currently available methods being used for computational electroencephalogram (EEG) analysis, from the fundamentals through to the state-of-the-art. The aim of the book is to help biomedical engineers and medical doctors who use EEG to better understand the methods and applications of computational EEG analysis from a single, well-organized resource. Following a brief introduction to the principles of EEG and acquisition techniques, the book is divided into two main sections. The first of these covers analysis methods, beginning with preprocessing, and then describing EEG spectral analysis, event-related potential analysis, source imaging and multimodal neuroimaging, and functional connectivity analysis. The following section covers application of EEG analysis to specific fields, including the diagnosis of psychiatric diseases and neurological disorders, brain-computer interfacing, and social neuroscience. Aimed at practicing medical specialists, engineers, researchers and advanced students, the book features contributions from world-renowned biomedical engineers working across a broad spectrum of computational EEG analysis techniques and EEG applications
ISBN,Price9789811309083
Keyword(s)1. Biomedical engineering 2. Biomedical Engineering and Bioengineering 3. Computational Science and Engineering 4. Computer mathematics 5. EBOOK 6. EBOOK - SPRINGER 7. Imaging / Radiology 8. Medical and Radiation Physics 9. Medical physics 10. Neurology 11. Neurology?? 12. RADIATION 13. Radiology
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23.     
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TitleSynchrotron Light Sources and Free-Electron Lasers : Accelerator Physics, Instrumentation and Science Applications
Author(s)Jaeschke, Eberhard J;Khan, Shaukat;Schneider, Jochen R;Hastings, Jerome B
PublicationCham, Springer International Publishing, 2020.
Description1116 illus., 925 illus. in color. eReference : online resource
Abstract NoteThis handbook presents the development of synchrotron light sources and free-electron lasers as well as new scientific applications. Hardly any other discovery of the nineteenth century had such an impact on science and technology as Wilhelm Conrad R??ntgen???s seminal discovery of X-rays in the year 1895. X-ray tubes soon became established as excellent instruments for numerous applications in medicine, biology, materials science and testing, chemistry and even public security. Developing new radiation sources with higher and higher brilliance and much extended spectral range for an ever widening field of research resulted in stunning developments like the electron storage ring and the free-electron laser. This second edition includes both updated chapters and new contributions highlighting the most recent developments in the field. Reports on operation experience of the new FEL facilities are complemented by discussions of new developments in X-ray beamline optics and detectors. Contributions on applications now include high pressure work, catalytic processes and engineering materials, medical applications and studies of cultural heritage. New contributions on IR spectroscopy, resonant inelastic X-ray scattering (RIXS) and studies of liquids complete this second edition.
ISBN,Price9783030232016
Keyword(s)1. Biological and Medical Physics, Biophysics 2. BIOLOGICAL PHYSICS 3. BIOPHYSICS 4. Characterization and Evaluation of Materials 5. CLASSICAL ELECTRODYNAMICS 6. EBOOK 7. EBOOK - SPRINGER 8. ELECTRODYNAMICS 9. Imaging / Radiology 10. MATERIALS SCIENCE 11. Measurement Science and Instrumentation 12. Measurement?????? 13. OPTICS 14. PHYSICAL CHEMISTRY 15. PHYSICAL MEASUREMENTS 16. Radiology
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24.     
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TitleLabel-Free Super-Resolution Microscopy
Author(s)Astratov, Vasily
PublicationCham, Springer International Publishing, 2019.
DescriptionXXII, 487 p. 244 illus., 222 illus. in color : online resource
Abstract NoteThis book presents the advances in super-resolution microscopy in physics and biomedical optics for nanoscale imaging. In the last decade, super-resolved fluorescence imaging has opened new horizons in improving the resolution of optical microscopes far beyond the classical diffraction limit, leading to the Nobel Prize in Chemistry in 2014. This book represents the first comprehensive review of a different type of super-resolved microscopy, which does not rely on using fluorescent markers. Such label-free super-resolution microscopy enables potentially even broader applications in life sciences and nanoscale imaging, but is much more challenging and it is based on different physical concepts and approaches. A unique feature of this book is that it combines insights into mechanisms of label-free super-resolution with a vast range of applications from fast imaging of living cells to inorganic nanostructures. This book can be used by researchers in biological and medical physics. Due to its logically organizational structure, it can be also used as a teaching tool in graduate and upper-division undergraduate-level courses devoted to super-resolved microscopy, nanoscale imaging, microscopy instrumentation, and biomedical imaging
ISBN,Price9783030217228
Keyword(s)1. Biological Microscopy 2. Biomedical engineering 3. Biomedical Engineering and Bioengineering 4. Biomedical Engineering/Biotechnology 5. EBOOK 6. EBOOK - SPRINGER 7. Imaging / Radiology 8. MICROSCOPY 9. Nanoscale science 10. Nanoscale Science and Technology 11. NANOSCIENCE 12. Nanostructures 13. Radiology 14. SPECTROSCOPY 15. Spectroscopy and Microscopy
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25.     
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TitleRadiation Hazard in Space
Author(s)Miroshnichenko, L.I
PublicationDordrecht, Springer Netherlands, 2003.
DescriptionX, 243 p : online resource
Abstract NoteThe mono graph contains 8 chapters, and their contents cover all principal aspects of the problem: 1. Introduction and brief his tory ofthe radiation problem and background information ofradiation hazard in the near-Earth and interplanetary space. 2. General description of radiation conditions and main sources of charged partic1es in the Earth's environment and interplanetary space, effects of space environment on spacecraft. 3. Basic information about physical conditions in space and main sources of charged particles in the Earth's environment and interplanetary space, in the context of "Space W eather" monitoring and prediction. 4. Trapped radiation belts of the Earth (ERB): theory of their origin, spatial and temporal dynamics, and experimental and statistical models. 5. Galactic cosmic rays (GCR): variations of energetic, temporal and spatial characteristics, long-term modulation, and anomalous cosmic ray (ACR) component, modeling oftheir dynamics. 6. Production of energetic particles (SEPs) at/ne ar the Sun: available databases, acceleration, propagation, and prediction of individual SEP event, statistical models of solar cosmic rays (SCR). 7. Existing empirical techniques of estimating, prediction and modeling of radiation hazard, methodical approaches and constraints, some questions of changes in the Earth's radiation environment due to changes of the solar activity level. 8. Unresolved problems of radiation hazard prediction and spacecraft protection, radiation experiments on board the spacecraft, estimating of radiation conditions during interplanetary missions. Space does not allow us to explain every time the solar-terrestrial and radiation physics nomencIature used in current English-language literature
ISBN,Price9789401703017
Keyword(s)1. ASTROPHYSICS 2. Astrophysics and Astroparticles 3. Automotive engineering 4. Diagnostic Radiology 5. EBOOK 6. EBOOK - SPRINGER 7. Ecotoxicology 8. Heavy ions 9. NUCLEAR PHYSICS 10. Nuclear Physics, Heavy Ions, Hadrons 11. Radiology
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26.     
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TitleWaves and Imaging through Complex Media
Author(s)Sebbah, P
PublicationDordrecht, Springer Netherlands, 2001.
DescriptionX, 460 p : online resource
Abstract NoteRecent advances in wave propagation in random media are certainly consequences of new approaches to fundamental issues, as well as of a strong interest in potential applications. A collective effort has been made to present in this book the state of the art in fundamental concepts, as well as in biomedical imaging techniques. As an example, the recent introduction of wave chaos, and more specifically random matrix theory - an old tool from nuclear physics - to the study of multiple scattering, has pointed the way to a deeper understanding of wave coherence in complex media. At the same time, efficient new approaches for retrieving information from random media promise to allow wave imaging of small tumors in opaque tissues. Review chapters are written by experts in the field, with the aim of making the book accessible to the widest possible scientific audience: graduate students and research scientists in theoretical and applied physics, optics, acoustics, and biomedical physics
ISBN,Price9789401009751
Keyword(s)1. Applications of Mathematics 2. APPLIED MATHEMATICS 3. Characterization and Evaluation of Materials 4. EBOOK 5. EBOOK - SPRINGER 6. ENGINEERING MATHEMATICS 7. Imaging / Radiology 8. MATERIALS SCIENCE 9. PHYSICS 10. Physics, general 11. Radiology
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27.     
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TitleAcoustical Imaging
Author(s)Hua Lee
PublicationNew York, NY, Springer US, 2002.
DescriptionXIII, 409 p. 214 illus : online resource
Abstract NoteThe International Symposium of Acoustical Imaging has been widely recognized as the premier forum for presentations of advanced research results in both theoretical and experimental development. Held regularly since 1968, the symposium brings together th leading international researchers in the area of acoustical imaging. The 24 meeting is the third time Santa Barbara hosted this international conference and it is the first time the meeting was held on the campus of the University of California, Santa Barbara. As many regular participants noticed over the years, this symposium has grown significantly in size due to the quality of the presentations as well as the organization itself. A few years ago multiple and poster sessions were introduced in order to accommodate this growth. In addition, the length of the presentations was shortened so more papers could be included in the sessions. During recent meetings there were discussions regarding the possibility of returning to the wonderful years when the symposium was organized in one single session with sufficient time to allow for in-depth presentation as well as discussions of each paper. And the size of the meeting was small enough that people were able to engage in serious technical interactions and all attendees would fit into one photograph. In light of the constraints of the limited budget with respect to the escalating costs it was not considered feasible
ISBN,Price9780306471087
Keyword(s)1. ACOUSTICS 2. Biomedical engineering 3. Biomedical Engineering and Bioengineering 4. Characterization and Evaluation of Materials 5. EBOOK 6. EBOOK - SPRINGER 7. IMAGE PROCESSING 8. MATERIALS SCIENCE 9. Radiology 10. SIGNAL PROCESSING 11. Signal, Image and Speech Processing 12. Speech processing systems 13. Ultrasound
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28.     
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TitleShock Focussing Effect in Medical Science and Sonoluminescence
Author(s)Srivastava, Ramesh C;Leutloff, Dieter;Takayama, Kazuyashi;Gr??nig, Hans
PublicationBerlin, Heidelberg, Springer Berlin Heidelberg, 2003.
DescriptionX, 226 p : online resource
Abstract NoteIn 1942 Guderley investigated the behaviour of the typical parameters near the axis when he was studying the focusing of cylindrical shock waves by solving the partial differential equations using the similarity method. He pre?? dicted an infinitely large pressure and temperature at the axis of convergence. Since then many theoretical and experimental studies have been performed on shock focusing as an energy source for the generation of very high pressures and temperatures. Many experimental investigations confirmed the idea of Guderley that at the centre of convergence extremely high pressures and temperatures can be obtained. At the Technical University of Darmstadt we performed a numerical exper?? iment to investigate the shock-focusing phenomenon, and many test problems were solved using the Rusanov scheme. At the centre of convergence we ob?? tained extremely high pressures and temperatures. The results of these inves?? tigations were compared with the experimental work done at the Max Planck Institute for Fluid Dynamics Research in Gottingen. The three-dimensional time-dependent shock wave which was created by a centred gas volume under high pressure interacts with the plane walls of the cavity and leads to a focusing effect after the explosion. The symmetry-preserving character of the invari?? ant difference scheme under use was proved numerically by calculation over a long interval of time. A test run of our investigation was also made at the Institute of Computational Fluid Dynamics in Tokyo, Japan
ISBN,Price9783662051610
Keyword(s)1. ACOUSTICS 2. Biomedical engineering 3. Biomedical Engineering and Bioengineering 4. CLASSICAL MECHANICS 5. EBOOK 6. EBOOK - SPRINGER 7. Fluid- and Aerodynamics 8. FLUIDS 9. MECHANICS 10. Radiology 11. Ultrasound 12. Urology
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29.     
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TitleAcoustical Imaging : Volume 26
Author(s)Maev, Roman Gr
PublicationNew York, NY, Springer US, 2002.
DescriptionXIII, 516 p : online resource
Abstract NoteThis book constitutes the Proceedings of the 26th Symposium on Acoustical Imaging held inWindsor, Ontario, Canada during September 9-12, 2001. This traditional scientific event is recognized as a premier forum for the presentation of advanced research results in both theoretical and experimental development. The lAIS was conceived at a 1967Acoustical Holography meeting in the USA. Since then, these traditional symposia provide an opportunity for specialists who are working in this area to make new acquaintances, renew old friendships and present recent results of their research. Our Symposium has grown significantly in size due to a broad interest in various topics and to the quality of the presentations. For the firsttime in 40 years, the IAIS was held in the province of Ontario in Windsor, Canada's Automotive Capital and City of Roses. The 26th IAIS attracted over 100specialists from 13countries representing this interdisciplinary field in physical acoustics, image processing, applied mathematics, solid-state physics, biology and medicine, industrial applications and quality control technologies. The 26th lAIS was organized in the traditional way with only one addition-a Special Session "History of Acoustical Imaging" with the involvement of such well known scientists as Andrew Briggs, Noriyoshi Chubachi, Robert Green Jr., Joie Jones, Kenneth Erikson, and Bernhard Tittmann. Many of these speakers are well known scientists in their fields and we would like to thank them for making this session extremely successful
ISBN,Price9781441986061
Keyword(s)1. Characterization and Evaluation of Materials 2. CONDENSED MATTER 3. CONDENSED MATTER PHYSICS 4. EBOOK 5. EBOOK - SPRINGER 6. Image Processing and Computer Vision 7. MATERIALS SCIENCE 8. Measurement Science and Instrumentation 9. Measurement?????? 10. OPTICAL DATA PROCESSING 11. PHYSICAL MEASUREMENTS 12. Radiology 13. Ultrasound
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30.    
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TitleAdvanced Optical Imaging Theory
Author(s)Gu, Min
PublicationBerlin, Heidelberg, Springer Berlin Heidelberg, 2000.
DescriptionXII, 214 p : online resource
Abstract NoteOptical microscopy and associated technologies advanced quickly after the introduction of the laser. The techniques have stimulated further development of optical imaging theory, including 3-dimensional microscopy imaging theory in spatial and frequency domains, the theory of imaging with ultrashort-pulse beams and aberration theory for high-numerical-aperture objectives. This book introduces these new theories in terms of modern optical microscopy. It consists of seven chapters including an introduction. The chapters are organized to minimize cross-referencing. Comparisons with classical imaging theory are made when the new imaging theory is introduced. The book is intended for senior undergraduate students in courses on optoelectronics, optical engineering, photonics, biophotonics and applied physics, after they have completed modern optics or a similar subject. It is also a reference for other scientists interested in the field
ISBN,Price9783540484714
Keyword(s)1. Biological and Medical Physics, Biophysics 2. BIOLOGICAL PHYSICS 3. BIOPHYSICS 4. EBOOK 5. EBOOK - SPRINGER 6. Imaging / Radiology 7. LASERS 8. Optics, Lasers, Photonics, Optical Devices 9. PHOTONICS 10. Radiology
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