
Biomedical Imaging Technology
Signal Processing Strategies and Innovations
Wiley-IEEE Press
1st Edition
Will be published approx. on 3. December 2025
Book
Hardback
272 pages
978-1-394-34805-3 (ISBN)
Description
Explore emerging applications for AI, machine learning, and deep learning in biomedical imaging technologies
In Biomedical Imaging Technology, a team of distinguished researchers deliver an expert discussion on the application of imaging and signal processing techniques to healthcare technologies like X-ray, MRI, CT, ultrasound, and others. Beginning with an introduction to biomedical imaging, the book goes on to explain more advanced imaging technologies, such as molecular and optical imaging.
This book provides a blend of theory and practical applications, exploring the role of AI and AI algorithms in enhancing diagnostic accuracy. It discusses machine and deep learning approaches for improving computer-aided diagnosis systems and the integration of signal processing within various imaging modalities.
Readers will also find:
A thorough introduction to contemporary approaches to optical imaging, including fluorescence imaging, photoacoustic imaging, and Optical Coherence Tomography (OCT)
Comprehensive explorations of image-guided interventions, theranostics in cancer treatment, and advancements in surgical navigation
Practical discussions of emerging trends in the field and up-and-coming innovations
Case studies and practical examples from real-world locations
Perfect for researchers in biomedical engineering, imaging, and signal processing, Biomedical Imaging Technology will also benefit undergraduate and graduate students studying electrical engineering subjects, such as biomedical imaging and signal processing.
In Biomedical Imaging Technology, a team of distinguished researchers deliver an expert discussion on the application of imaging and signal processing techniques to healthcare technologies like X-ray, MRI, CT, ultrasound, and others. Beginning with an introduction to biomedical imaging, the book goes on to explain more advanced imaging technologies, such as molecular and optical imaging.
This book provides a blend of theory and practical applications, exploring the role of AI and AI algorithms in enhancing diagnostic accuracy. It discusses machine and deep learning approaches for improving computer-aided diagnosis systems and the integration of signal processing within various imaging modalities.
Readers will also find:
A thorough introduction to contemporary approaches to optical imaging, including fluorescence imaging, photoacoustic imaging, and Optical Coherence Tomography (OCT)
Comprehensive explorations of image-guided interventions, theranostics in cancer treatment, and advancements in surgical navigation
Practical discussions of emerging trends in the field and up-and-coming innovations
Case studies and practical examples from real-world locations
Perfect for researchers in biomedical engineering, imaging, and signal processing, Biomedical Imaging Technology will also benefit undergraduate and graduate students studying electrical engineering subjects, such as biomedical imaging and signal processing.
More details
Language
English
Place of publication
United States
Publishing group
John Wiley & Sons Inc
Target group
College/higher education
Product notice
sewn/stitched
Cloth over boards
Dimensions
Height: 229 mm
Width: 152 mm
Thickness: 16 mm
Weight
535 gr
ISBN-13
978-1-394-34805-3 (9781394348053)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Additional editions

Ayush Dogra | Shalli Rani | Ankita Sharma
Biomedical Imaging Technology
Signal Processing Strategies and Innovations
E-Book
11/2025
1st Edition
Wiley
€130.99
Available for download

Ayush Dogra | Shalli Rani | Ankita Sharma
Biomedical Imaging Technology
Signal Processing Strategies and Innovations
E-Book
11/2025
1st Edition
Wiley
€130.99
Available for download
Persons
Ayush Dogra, PhD, is an Assistant Director at Chitkara University, Punjab, India. His research areas include image fusion, image enhancement, image registration, and image denoising.
Shalli Rani, PhD, is a Professor and Director at Chitkara University, Punjab, India. She is a Senior Member of the IEEE and her research interests include Internet of Things, WSN, cloud computing, network security, and machine learning.
Ankita Sharma, PhD, is an Assistant Professor at Chitkara University, Punjab, India. She has authored numerous national and international publications in peer-reviewed journals.
Shalli Rani, PhD, is a Professor and Director at Chitkara University, Punjab, India. She is a Senior Member of the IEEE and her research interests include Internet of Things, WSN, cloud computing, network security, and machine learning.
Ankita Sharma, PhD, is an Assistant Professor at Chitkara University, Punjab, India. She has authored numerous national and international publications in peer-reviewed journals.
Editor
Chitkara University Institute of Engineering and Technology, Chitkara University, India
Chitkara University Institute of Engineering and Technology, Chitkara University, India
Chitkara University Institute of Engineering and Technology, Chitkara University, India
Content
Preface xix
About the Editors xxi
Acknowledgment xxv
1 Historical Evolution and Technological Advancements in Biomedical Imaging 1
2 Deep Learning Techniques for Biomedical Imaging 25
3 Advanced Methods and Approaches in Image Reconstruction 45
4 Integrative Approaches in Image Analysis and Signal Interpretation 73
5 Multimodal Imaging: Combining Molecular and Optical Approaches 95
6 Advancements in Biomedical Imaging Using Fluorescence and Bioluminescence 121
7 Innovative Diagnostic Imaging Techniques and Protocols 145
8 Applications and Clinical Impacts of Biomedical Imaging 163
9 Emerging Technologies and Innovations in Medical Imaging 181
10 Therapeutic Interventions Guided by Advanced Imaging Modalities 203
11 Addressing Technical and Clinical Challenges in Next-Generation Imaging 229
Index 243
About the Editors xxi
Acknowledgment xxv
1 Historical Evolution and Technological Advancements in Biomedical Imaging 1
2 Deep Learning Techniques for Biomedical Imaging 25
3 Advanced Methods and Approaches in Image Reconstruction 45
4 Integrative Approaches in Image Analysis and Signal Interpretation 73
5 Multimodal Imaging: Combining Molecular and Optical Approaches 95
6 Advancements in Biomedical Imaging Using Fluorescence and Bioluminescence 121
7 Innovative Diagnostic Imaging Techniques and Protocols 145
8 Applications and Clinical Impacts of Biomedical Imaging 163
9 Emerging Technologies and Innovations in Medical Imaging 181
10 Therapeutic Interventions Guided by Advanced Imaging Modalities 203
11 Addressing Technical and Clinical Challenges in Next-Generation Imaging 229
Index 243