Biophotonics and Biosensing: From Fundamental Research to Clinical Trials Through Advances of Signal and Image Processing: Photonic Materials and Applications Series
Editat de Andrea Armani, Tatevik Chalyan, David Sampsonen Limba Engleză Paperback – 30 mai 2024
The book provides a basic grounding in the key theoretical principles and practical components of biophotonics and biosensing. Working principles of devices used in spectroscopy, microscopy, and optical sensing are presented, along with their application domains. The reader will learn about existing microscopy-based techniques used in biomedical applications for diagnosis and get to know different signal- and image-processing algorithms, including the state of the art in artificial intelligence approaches, as used in biophotonics. Finally, the book describes through concrete examples, including sample preparation and measurement approaches, how the field has developed, thanks to the integration of biophotonics and optical biosensing with advanced signal and image-processing.
- Introduces key principles of light-biological tissue interactions and biosensing
- Discusses how the most promising optical diagnostic methods can exploit contemporary signal and image processing algorithms and data analytics
- Includes examples of clinical studies with detailed descriptions of their implementation, along with practical guidance
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Specificații
ISBN-13: 9780443188404
ISBN-10: 0443188408
Pagini: 518
Dimensiuni: 152 x 229 mm
Greutate: 0.69 kg
Editura: ELSEVIER SCIENCE
Seria Photonic Materials and Applications Series
ISBN-10: 0443188408
Pagini: 518
Dimensiuni: 152 x 229 mm
Greutate: 0.69 kg
Editura: ELSEVIER SCIENCE
Seria Photonic Materials and Applications Series
Cuprins
Part One: Background and principles of biophotonics and optical biosensing
1. Tissue optics
2. Optical biosensors: from working principles of to detection methods of label-free devices
Part Two: Microscopy techniques and optical biosensing in research, laboratory, and clinical applications
3. Fluorescence microscopy: backbone of modern biomedical research
4. Raman spectroscopy - research lab analytics
5. Subwavelength periodic dielectric nanostructures for biochemical sensing
6. Integrated photonic and plasmonic biosensors
7. Optical fiber-based biosensing: applications in biology and medicine
8. Photonic biosensing at the point-of-care
9. Endomicroscopy
10. Optical coherence tomography technology in clinical applications
Part Three: Advanced signal/image processing and data analysis methods for microscopy and sensing techniques
11. Innovations in signal/image processing and data analysis in optical microscopy
12. Recent innovations in signal and image processing and data analysis in Raman spectroscopy
13. AI-driven innovations in signal/image processing and data analysis for optical coherence tomography in clinical applications
1. Tissue optics
2. Optical biosensors: from working principles of to detection methods of label-free devices
Part Two: Microscopy techniques and optical biosensing in research, laboratory, and clinical applications
3. Fluorescence microscopy: backbone of modern biomedical research
4. Raman spectroscopy - research lab analytics
5. Subwavelength periodic dielectric nanostructures for biochemical sensing
6. Integrated photonic and plasmonic biosensors
7. Optical fiber-based biosensing: applications in biology and medicine
8. Photonic biosensing at the point-of-care
9. Endomicroscopy
10. Optical coherence tomography technology in clinical applications
Part Three: Advanced signal/image processing and data analysis methods for microscopy and sensing techniques
11. Innovations in signal/image processing and data analysis in optical microscopy
12. Recent innovations in signal and image processing and data analysis in Raman spectroscopy
13. AI-driven innovations in signal/image processing and data analysis for optical coherence tomography in clinical applications