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Biomedical Optics: Principles and Imaging, by Lihong V. Wang, Hsin-i Wu
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This entry-level textbook, covering the area of tissue optics, is based on the lecture notes for a graduate course (Bio-optical Imaging) that has been taught six times by the authors at Texas A&M University. After the fundamentals of photon transport in biological tissues are established, various optical imaging techniques for biological tissues are covered. The imaging modalities include ballistic imaging, quasi-ballistic imaging (optical coherence tomography), diffusion imaging, and ultrasound-aided hybrid imaging. The basic physics and engineering of each imaging technique are emphasized.
A solutions manual is available for instructors; to obtain a copy please email the editorial department at ialine@wiley.com.
- Sales Rank: #778315 in Books
- Published on: 2007-05-29
- Original language: English
- Number of items: 1
- Dimensions: 9.50" h x .90" w x 6.40" l, 1.44 pounds
- Binding: Hardcover
- 376 pages
From the Back Cover
The premier comprehensive reference on biomedical optics for practitioners and students
Biophotonics is a rapidly growing field with applications in medicine, genetics, biology, agriculture, and environmental science.?Written by respected experts, Biomedical Optics: Principles and Imaging is the first thorough reference and textbook on the subject. It covers:
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The fundamentals of photon transport in biological tissues, including explanations of Rayleigh and Mie scattering, Monte Carlo simulations, the radiative transport equation, and more
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Various optical imaging techniques for biological tissues, including ballistic or quasi-ballistic imaging (such as confocal microscopy, two-photon microscopy, and optical coherence tomography), diffuse imaging (such as DC, time-domain techniques, and frequency-domain techniques), and ultrasound-aided hybrid imaging (including photoacoustic tomography and ultrasound-modulated optical tomography)
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The basic physics and engineering of each imaging modality
Complete with equation derivations, examples, and case studies plus a constantly updated Web site featuring an established Monte Carlo program, other sample programs, tables and figures, and more, this is a great reference for practitioners. With an instructor's solutions manual and problems for students to complete, it's an excellent textbook for upper-level undergraduates or graduate students.
About the Author
Lihong V. Wang, PhD, is Gene K. Beare Distinguished Professor in the Department of Biomedical Engineering and Director of the Optical Imaging Laboratory at Washington University in St. Louis. Dr. Wang is Chair of the International Biomedical Optics Society. His?Monte Carlo model of photon transport in biological tissues has been used worldwide. He has published more than 120 peer-reviewed journal articles and patents.
HSIN-I WU, PhD, is Professor of Biomedical Engineering at Texas A&M University. He has published more than fifty peer-reviewed journal articles. Dr. Wu was a senior Fulbright scholar and is listed in Outstanding Educators of America. He serves on the Editorial Advisory Board of Biocomplexity and the Editorial Board of BioMedical Engineering OnLine.
Most helpful customer reviews
3 of 3 people found the following review helpful.
The Most Practical Text in the Field
By Laurel Jones
This is probably the most practical text in the field of Biomedical Optics I have ever seen. The first one with practice problems so that a student can test themselves on their knowledge. It is also more coherent and easier to follow than the several texts in this field where each chapter is written by a different author and leaps from topic to topic in a rather fragmentary manner. I'd highly recommend this to professors as a standard textbook for a class.
0 of 0 people found the following review helpful.
Practical, pedagogical with some room for improvement
By Codina
A very pedagogical approach to optical instruments used in biomedical imaging is presented by the author in Biomedical Optics: Principles and Imaging. This text is widely considered to be the most practical text in the field.
I am looking forward to a second edition of the book, which is necessary in this rapidly evolving filed of optics. I would like to see learning outcomes at the beginning of each chapter, a review of the main concepts at the end and possibly a profile of a prominent researcher in each application. For instance: Prof. Wang in photoacoustic tomography, Prof. Yodh in Diffuse Optical Tomography, Prof. Boas in MonteCarlo, Prof. Fujimoto in Optical Coherence Tomography, etc.
A future deluxe edition with color illustrations wouldn't hurt either.
0 of 0 people found the following review helpful.
Good start, but needs more polish
By theGraduateStudent
Considering what came before, this text is revolutionary. Previously a 'text' on biomedical optics consisted of various papers or transactions bound together in one book. This is a volume that was started with teaching a class in mind and has plenty of good exercises for students. I say 'started' because as a text book it still has a long way to go. The writing style is very dry (a minor qualm) and overly concise - sometimes one wishes the authors expounded on the concepts with more examples or illustrations outside of the mathematics.
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