Study BME in Thailand 2007

วันจันทร์ที่ 15 มิถุนายน พ.ศ. 2552

Medical Image Processing


Handbook of Medical Image Processing and Analysis

This handbook present concept and digital techniques for processing and analyzing medical images after they have been generated or digitized. It is organized into six sections that correspond to the fundamental classes of algorithms: enhancement, segmentation, quantification, registration, visualization, and a section that covers compression, storage, and communication. The discoveries of seminal physical phenomena such as X-rays, ultrasound, radioactivity, and magnetic resonance, and the development of imaging instruments that harness them have provided some of the most effective diagnostic tools in medicine. The medical imaging community is now able to probe into the structure, function, and pathology of the human body with a diversity of imaging systems. These systems are alsoused for planning treatment and surgery, as well as for imaging in biology. Data sets in two, three, or more dimensions convey increasingly vast and detailed information for clinical orresearch applications. This information has to be interpreted in a timely and accurate manner to benefit health care.

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Biomethods


Molecular Biomethods Hand book
In the first edition of the Molecular Biomethods Handbook, we introduced the reader to a selection of analytical and preparative techniques that we considered to be frequently used by research workers in the field of molecular biology. Clearly, within the constraints of a single volume we had to be selective in the techniques we described. Since the first edition was published, science has continued to move on apace. For example, the use of microarray technology is now commonplace, nanotechnology has entered the scientific literature, microfluidic technology has been developed, the tremendous potential of stem cells has been recognized, single-cell analysis is becoming routine, the human genome has been sequenced, and new techniques for mapping and RNA expression have been introduced. The second edition is consequently significantly expanded, with over 1100 pages compared to the 720 pages of the first edition.

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Tissue Engineering


Tissue engineering

Tissue engineering aims to create medical devices that, once implanted, will replace or enhance tissue function that has been impaired by disease, injury, or age. The book then turns to important areas of tissue engineering with respect to case studies on individual tissues and organs. There are chapters that specifically discuss skin, cartilage, bone, the nervous system, and various organ systems. Important ethical issues in tissue engineering are discussed.The book also examines the important issue of tissue compatibility and biomaterials compatibility which with the body. In addition, scaffold design and fabrication are discussed so that the reader may have a better understanding of how to develop and manufacture these systems. Ways of using controlled release from materials is examined; controlled release of different factors (e.g. growth factors to promote vascularization) can provide an important means of controlling and improving tissue function.

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Genomics and Proteomics

Biomems and Biomedical Nanotechnology:
Micro-and-Nano-technologies for Genomics and Proteomics




The Volume II: Micro/Nano Technologies for Genomics and Proteomics presents a wide range of exciting new science and technology, and includes key sections on DNA micro/nanoarrays which additional chapters on peptide arrays for proteomics and drug discovery, new dielectrophoretic cell separation systems and new nanofabrication and integration processes; advanced microfluidic devices for the human genome project (whole genome sequencing); and final section on nanoprobes for imaging and sensing. Over all this volume should be of considerable value for a wide range of multidisciplinary scientists and engineers who are either working in or interested in bionanotechnology and the next generation of micro/nano biomedical and clinical diagnostic devices. Numerous miniaturized DNA micro array, DNA chip, Lab on a Chip and biosensor devices have been developed and commercialized. Such devices are improving the way many important genomic and proteomic analyses are performed in both research and clinical diagnostic laboratories. The development of these technologies was enabled by a synergistic combination of disciplines that include microfabrication, microfluidics, MEMS, organic chemistry and molecular biology. Some of these newdevices and technologies utilize sophisticated microfabrication processes developed by the semiconductor industry.

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วันพฤหัสบดีที่ 4 มิถุนายน พ.ศ. 2552

Digital Signal Processing

by John G. Proakis (Author), Dimitris K Manolakis (Author)



Digital Signal Processing (4th Edition) (Hardcover)
Editorial ReviewsProduct Description

A significant revision of a best-selling text for the introductory digital signal processing course. This book presents the fundamentals of discrete-time signals, systems, and modern digital processing and applications for students in electrical engineering, computer engineering, and computer science.The book is suitable for either a one-semester or a two-semester undergraduate level course in discrete systems and digital signal processing. It is also intended for use in a one-semester first-year graduate-level course in digital signal processing.

Product Details
Hardcover: 1004 pages
Publisher: Prentice Hall; 4 edition (April 7, 2006)
Language: English
ISBN-10: 0131873741
ISBN-13: 978-0131873742
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EGBE 340:Recommended Texts:
1.Proakis and Manolakis, Digital Signal Processing, 4th Ed., Prentice-Hall, 2007

2.Ingle and Proakis, Digital Signal Processing Using MATLAB

3.Eugene N. Bruce, Biomedical Signal Processing and Signal Modeling, Wiley-Interscience, 2001

4.Oppenheim and Willsky, Discrete-Time Signal Processing, 2nd Ed.,1999

วันอังคารที่ 2 มิถุนายน พ.ศ. 2552

Biomedical Thermodynamics


Thermodynamics of Pharmaceutical Systems:
An Introduction for Students of Pharmacy

Studies of thermodynamics often fail to demonstrate how the mathematical intricacies of the subject relate to practical laboratory applications. Thermodynamics of Pharmaceutical Systems makes these connections clear, emphasizing specific applications to pharmaceutical systems in a study created
specifically for contemporary curriculums at colleges of pharmacy. Students investigating drug discovery, drug delivery, and drug action will benefit from Kenneth Connors’s authoritative treatment of the fundamentals of thermodynamics as well as his attention to drug molecules and experimental considerations. An extensive appendix that reviews the mathematics
needed to master the pharmacy curriculum proves an invaluable reference. Connors divides his one-of -a-kind text into three sections: Basic Thermodynamics, Thermodynamics of Physical Processes, and
Thermodynamics of Chemical Processes;
chapters include:
Energy and the First Law of Thermodynamics
The Entropy Concept
Phase Transformations
Solubility
Acid-Base Equilibria
Noncovalent Binding Equilibria Thermodynamics need not be a mystery nor be confined to the realm of mathematical theory.
Thermodynamics of Pharmaceutical Systems introduces students of pharmacy to the profound
thermodynamic applications in the laboratory while also serving as a handy resource for practicing
researchers.

EBook Disription

:By: Kenneth A. Connors Price: $86.45
Format: Adobe eBooks

Textbook
Thermodynamics of pharmaceutical systems:

an introduction for students of pharmacy
โดย Kenneth Antonio Connors
ผู้เขียน Kenneth Antonio Connors
Edition: illustrated
จัดพิมพ์โดย John Wiley and Sons, 2002
ISBN 047120241X, 9780471202417344 หน้า

วันจันทร์ที่ 1 มิถุนายน พ.ศ. 2552

Computational Methods for Biomedical Engineering



"Numerical Methods in Biomedical Engineering
"Stanley M.Dunn","2007","AP","TextBook/E Book"

Book Description


Numerical Modeling in Biomedical Engineering brings together the integrative set of computational problem solving tools important to biomedical engineers. Through the use of comprehensive homework exercises, relevant examples and extensive case studies, this book integrates principles and techniques of numerical analysis. Covering biomechanical phenomena and physiologic, cell and molecular systems, this is an essential tool for students and all those studying biomedical transport, biomedical thermodynamics & kinetics and biomechanics. ? Supported by Whitaker Foundation Teaching Materials Program; ABET-oriented pedagogical layout ? MATLAB problem sets and examples available electronically; UNIX, Windows, Mac OS compatible ? Extensive hands-on homework exercises About the Author Stanley Dunn is the Paul S. and Mary W. Monroe Faculty Scholar and Professor of Biomedical Engineering at Rutgers University and Professor of Pediatrics at the Robert Wood Johnson Medical School. In addition, he holds graduate faculty appointments in Computer Science and Electrical and Computer Engineering at Rutgers. He has served as Graduate Program Director, Undergraduate Program Director, and Department Chair in Biomedical Engineering and currently serves as Associate Dean in the School of Engineering. A Fellow of AIMBE, his research interests are in localized tomography, pediatric neuroimaging, inverse problems and subspace projection methods and their application. Alkis Constantinides is a Professor of Chemical and Biochemical Engineering, with nearly forty years of academic and industrial experience. He is the author of the textbook Applied Numerical Methods with Personal Computers and the co-author of the textbook Numerical Methods for Chemical Engineers with MATLAB Applications. Dr. Constantinides has served as Chairman of the Department, Director of the Graduate Program, Director of the Undergraduate Program, and Director of Alumni Relations. He is the recipient of the prestigious Warren I. Susman Award for Excellence in Teaching (1991), and the recipient of the 1998, 1999, 2003, and 2005 Best Teacher of the Year Awards chosen by the Graduating Senior Class of the Department of Chemical and Biochemical Engineering Prabhas Moghe is Associate Professor of Biomedical Engineering and Associate Professor of Chemical and Biochemical Engineering at Rutgers University. In addition, he holds graduate faculty appointment in the Graduate Program in Cell and Developmental Biology at Rutgers/UMDNJ. He has served as Undergraduate Program Director in Biomedical Engineering and currently directs the NSF IGERT Program on Integratively Engineered Biointerfaces at Rutgers. A Fellow of the American Institute of Medical and Biological Engineering (AIMBE) and a recipient of the NSF CAREER Award and several teaching awards at Rutgers, Dr. Moghe has an active research program in the areas of cellular bioengineering; micro- and nano-systems bioengineering; and cell-interactive biomaterials.

Numerical Modeling in Biomedical Engineering brings together the integrative set of computational problem solving tools important to biomedical engineers. Through the use of comprehensive homework exercises, relevant examples and extensive case studies, this book integrates principles and techniques of numerical analysis. Covering biomechanical phenomena and physiologic, cell and molecular systems, this is an essential tool for students and all those studying biomedical transport, biomedical thermodynamics & kinetics and biomechanics.

Supported by Whitaker Foundation Teaching Materials Program; ABET-oriented pedagogical layout
MATLAB problem sets and examples available electronically; UNIX, Windows, Mac OS compatible
Extensive hands-on homework exercises

Edition: illustrated
Academic Press, 2006
ISBN 0121860310, 9780121860318
615 หน้า

>>Book Review By Google Book Search


"Numerical Methods for Engineers, 5Ed


"S.C.Chapra and R.P.Canle","2007","McGraw-Hill","TextBook"


The fifth edition of "Numerical Methods for Engineers continues its tradition of excellence. Instructors love this text because it is a comprehensive text that is easy to teach from. Students love it because it is written for them--with great pedagogy and clear explanations and examples throughout. The text features a broad array of applications, including all engineering disciplines. The revision retains the successful pedagogy of the prior editions. Chapra and Canale's unique approach opens each part of the text with sections called Motivation, Mathematical Background, and Orientation, preparing the student for what is to come in a motivating and engaging manner. Each part closes with an Epilogue containing sections called Trade-Offs, Important Relationships and Formulas, and Advanced Methods and Additional References. Much more than a summary, the Epilogue deepens understanding of what has been learned and provides a peek into more advanced methods. Users will find use of software packages, specifically MATLAB and Excel with VBA. This includes material on developing MATLAB m-files and VBA macros. Approximately 80% of the problems are new or revised for this edition. The expanded breadth of engineering disciplines covered is especially evident in the problems, which now cover such areas as biotechnology and biomedical engineering.

Book Discription
Numerical Methods for Engineers By Steven C. Chapra, Raymond P. Canale Edition: 5, illustrated, revised McGraw-Hill Higher Education, 2005

ISBN 007291873X, 9780072918731, 926 pages


-----------------------------------------
Suggested Reading:

♣"Elementary Numerical Analysis ","Atkinson","","Toptext","Softcover "
♣ "Computational Methods in Biomedical Research ","Ravindra Khattree and Dayanand Naik","","Chapman and Hall","TextBook"

♥ "Computational Cell Biology","Christopher Fall, Eric Marland, John Wagner, John Tyson","","","E-Book"
♥ "Computational Molecular Biology An Algorithmic Approach ","Pavel A. Pevzner.","","","E-Book"
♥ "Computational Molecular Biology An Introduction ","Peter Clote, Rolf Backofen.","","","E-Book"
♥ "Current Topics in Computational Molecular Biology ","Tao Jiang , Ying Xu , Michael Q. Zha.","","","E-Book"
♥ "Introduction to Computational molecular biology ","Carlos Setubal, Joao Meidanis","","","E-Book"
♥ "Numerical Methods for Engineers and Scientists 2nd ed.","J. Hoffman","","","E-Book"
♥ "Numerical Methods for Solving Inverse Problems of Mathematical Physics","","","","E-Book"