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Advanced biophotonics : tissue optical sectioning /

"This reference provides an overview of optical imaging and manipulation technologies in biophotonics, covering both basic and advanced optical imaging techniques. It reviews the principles and fundamentals of bioimaging and molecular imaging/manipulation techniques. It also presents an overvie...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Otros Autores: Wang, R. K. (Ruikang K.), Tuchin, V. V. (Valeriĭ Viktorovich)
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Boca Raton, FL : CRC Press, Taylor & Francis Group, ©2014.
Colección:Series in optics and optoelectronics (CRC Press) ; 19.
Temas:
Acceso en línea:Texto completo (Requiere registro previo con correo institucional)

MARC

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245 0 0 |a Advanced biophotonics :  |b tissue optical sectioning /  |c edited by Ruikang K. Wang, Valery V. Tuchin. 
260 |a Boca Raton, FL :  |b CRC Press, Taylor & Francis Group,  |c ©2014. 
300 |a 1 online resource (xx, 681 pages) :  |b illustrations (chiefly color) 
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490 1 |a Series in optics and optoelectronics ;  |v 19 
504 |a Includes bibliographical references. 
588 0 |a Online resource; title from PDF title page (EBSCO, viewed on July 23, 2013). 
520 |a "This reference provides an overview of optical imaging and manipulation technologies in biophotonics, covering both basic and advanced optical imaging techniques. It reviews the principles and fundamentals of bioimaging and molecular imaging/manipulation techniques. It also presents an overview of instrumentation, basic algorithms, and data processing methods. Accessible to students and researchers, the book discusses a range of application areas, including established and newer methodologies in biotechnology, biomedical engineering, biophysics, medicine, and pharmacology"--  |c Provided by publisher. 
520 |a "Preface Photonics is the science and technology of generation, manipulation and detection of light. The field uses the quantum-like particles of light, i.e., the photons, instead of electrons to transmit, process, and store information. Biophotonics is recently emerged from the applications of photonics in the fields of biology and medicine. The invention of lasers in the 1960s revolutionized photonics, and made rapid technological advancements that produced useful tools, such as bar code scanners, CD players and laser pointers that are already playing an important part in our daily life. The fluorescence microscope is the first taste of the power of Biophotonics that brought us the important molecular information within cells in almost all biological laboratories. Today, biophotonics is widely regarded as the key science upon which the next generation of clinical tools and biomedical research instrumentation will be based. Although nature has used the principle of biophotonics to harness light for photosynthesis, it wasn't until about 10 years ago that a substantial translation of photonics technologies to biological applications began to transform medical and life sciences. The knowledge of biophotonics essentially includes the fundamentals of many interdisciplinary fields and how they are uniquely related to each other. Researchers and students who are interested in biophotonics should have a solid understanding of the physics of light, and the engineering of devices and instruments that are used to generate, modify, and manipulate light. On the other hand, they must also understand the fundamentals of biology and medicine, such as the molecular and cellular processes that occur in living systems to properly and meaningfully utilize the"--  |c Provided by publisher. 
504 |a Includes bibliographical references and index. 
505 0 |a 1. Monte Carlo modeling of photon migration for the needs of biomedical optics and biophonics / Igor Meglinski and Alexander Doronin -- 2. Quantitative polarimetry for tissue characterization and diagnosis / David Layden, Nirmalya Ghosh and Alex Vitkin -- 3. Spatial and temporal frequency domain tissue optical imaging / Amaan Mazhar [and others] -- 4. Multiphon microscopy and SHG / Riccardo Cicchi, Leonardo Sacconi and Francesco S. Pavone -- 5. Optical coherence tomography : technical aspects / Hrebesh M. Subhash and Ruikang K. Wang -- 6. Speckle in optical coherence tomography / Andrea Curatolo [and others] -- 7. Optical coherence tomography and light-induced fluorescence : optical slicing plus biochemical probing / Jennifer Kehlet Barton -- 8. Multi-modal tomography combining optical coherence tomography (OCT) with fluorescence laminar optical tomography (FLOT) / Chao-Wei Chen and Yu Chen -- 9. Advances in blood flow imaging / Susan M. Daly and Martin J. Leahy -- 10. Optical microangiography / Hrebesh M. Subhash and Ruikang K. Wang -- 11. High-speed photoacoustic tomography / Liang Song and Zijian Guo and Lihong V. Wang -- 12. Optoacoustic molecular imaging : methods and applications / Adrian Taruttis and Vasilis Ntziachristos -- 13. Multimodal microscopy for comprehensive tissue characterizations / Shuliang Jiao and Hao F. Zhang -- 14. Adaptive optics scanning laser ophthalmoscopy (AOSLO) / Yuhua Zhang [and others] -- 15. Intrinsic optical signal imaging of retinal function at cellular resolution / Xin-Cheng Yao -- 16. Isometric 3D imaging of cellular samples using optical projection tomographic microscopy / Ryan L. Coe [and others] -- 17. Tissue optical clearing / Dan Zhu, Qingming Luo and Valery V. Tuchin. 
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