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LED-Based Photoacoustic Imaging

LED-Based Photoacoustic Imaging
Author: Mithun Kuniyil Ajith Singh
Publisher: Springer Nature
Total Pages: 393
Release: 2020-04-07
Genre: Science
ISBN: 9811539847

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This book highlights the use of LEDs in biomedical photoacoustic imaging. In chapters written by key opinion leaders in the field, it covers a broad range of topics, including fundamentals, principles, instrumentation, image reconstruction and data/image processing methods, preclinical and clinical applications of LED-based photoacoustic imaging. Apart from preclinical imaging studies and early clinical pilot studies using LED-based photoacoustics, the book includes a chapter exploring the opportunities and challenges of clinical translation from an industry perspective. Given its scope, the book will appeal to scientists and engineers in academia and industry, as well as medical experts interested in the clinical applications of photoacoustic imaging.


LED-Based Photoacoustic Imaging

LED-Based Photoacoustic Imaging
Author: Mithun Kuniyil Ajith Singh
Publisher: Springer
Total Pages: 393
Release: 2021-04-08
Genre: Science
ISBN: 9789811539862

Download LED-Based Photoacoustic Imaging Book in PDF, ePub and Kindle

This book highlights the use of LEDs in biomedical photoacoustic imaging. In chapters written by key opinion leaders in the field, it covers a broad range of topics, including fundamentals, principles, instrumentation, image reconstruction and data/image processing methods, preclinical and clinical applications of LED-based photoacoustic imaging. Apart from preclinical imaging studies and early clinical pilot studies using LED-based photoacoustics, the book includes a chapter exploring the opportunities and challenges of clinical translation from an industry perspective. Given its scope, the book will appeal to scientists and engineers in academia and industry, as well as medical experts interested in the clinical applications of photoacoustic imaging.


Photoacoustic Tomography

Photoacoustic Tomography
Author: Minghua Xu
Publisher: CRC PressI Llc
Total Pages: 400
Release: 2014-09-30
Genre: Technology & Engineering
ISBN: 9781439882245

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Biomedical Optics

Biomedical Optics
Author: Lihong V. Wang
Publisher: John Wiley & Sons
Total Pages: 378
Release: 2012-09-26
Genre: Science
ISBN: 0470177004

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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 [email protected].


Photoacoustic Imaging

Photoacoustic Imaging
Author: Reda Gharieb
Publisher: BoD – Books on Demand
Total Pages: 126
Release: 2020-05-06
Genre: Technology & Engineering
ISBN: 1789847664

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Photoacoustic imaging (PAI) is an emerging non-invasive imaging modality that integrates the advantages of deep ultrasound penetration and high optical contrast. It provides better resolution than pure ultrasonic imaging and deeper penetration than pure optical imaging. Hence, it is opening new frontiers in diagnostic imaging. Photoacoustic Imaging - Principles, Advances and Applications, provides interested readers with the principle knowledge, advanced methodologies, and new applications associated with PAI technology. Written by expert researchers, chapters cover such topics as the generation and detection of photoacoustic signals, sound source localization, image reconstruction and formation, and application of PAI in gastroenterology and ophthalmology.


Optoacoustic Spectroscopy and Detection

Optoacoustic Spectroscopy and Detection
Author: Yoh-Han Pao
Publisher: Elsevier
Total Pages: 257
Release: 2012-12-02
Genre: Science
ISBN: 0323158811

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Optoacoustic Spectroscopy and Detection discusses the fundamental principles and practice of optoacoustic spectroscopy. This book serves as a basis for evaluation of the feasibility of using such techniques in specific instances. Organized into eight chapters, this book starts with an overview of the detection and identification of gas contaminants, which is necessary to understand the physical description of the generation and measurement of the optoacoustic signal. This text then provides an understanding of the optoacoustic effect on a molecular scale and describes the energy transfer processes and estimates of the lifetimes of vibrationally excited states. Other chapters consider the options available to the researcher in the selection of optoacoustic system design. This book discusses as well the capabilities and limitations of various optoacoustic system designs. The final chapter deals with the technique used for exploring the absorption spectra of substances, including powders, gels, adsorbed films, and organic tissues. This book is a valuable resource for researchers and graduate students engaged in the study of optoacoustic spectroscopy.


Optical Imaging in Human Disease and Biological Research

Optical Imaging in Human Disease and Biological Research
Author: Xunbin Wei
Publisher: Springer Nature
Total Pages: 309
Release: 2021-05-29
Genre: Medical
ISBN: 9811576270

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The book introduces readers to the basic principle of optical imaging technologies. Focusing on human disease diagnostics using optical imaging methods, it provides essential information for researchers in various fields and discusses the latest trends in optical imaging. In recent decades, there has been a huge increase in imaging technologies and their applications in human diseases diagnostics, including magnetic resonance imaging, x-ray computed tomography, and nuclear tomographic imaging. This book promotes further developments to extend optical imaging to a wider range of disease diagnostics. It is a valuable resource for researchers and students in the field of biomedical optics, as well as for clinicians.


Toward Practical Deployment of Photoacoustic Imaging

Toward Practical Deployment of Photoacoustic Imaging
Author: Ali Hariri
Publisher:
Total Pages: 126
Release: 2021
Genre:
ISBN:

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Photoacoustic imaging is an emerging modality which the combination of ultrasound and optical imaging. The combination of these two techniques has many advantages including no use of ionizing radiation compared to radiography, high-resolution deep tissue imaging versus optical coherence tomography (OCT), and higher contrast and faster scanning compared to MRI. Most current equipment uses sophisticated and complicated OPO lasers with tuning and stability features inconsistent with broad clinical deployment. Low fluence illumination sources can facilitate clinical transition of photoacoustic imaging because they are rugged, portable, affordable, and safe. In this dissertation, I will present characterization of the commercial available light emitting diode (LED) based photoacoustic imaging in terms of system specifications, light source characterizations, photoacoustic spatial/temporal resolution, and penetration. Since low fluence light source based photoacoustic imaging devices generate low image quality, I will propose a denoising method using a multi-level wavelet-convolutional neural network to map low fluence illumination source images to its corresponding high fluence excitation map. This part of dissertation will show qualitative and quantitative improvements up to 2.20, 2.25, and 4.3-fold for peak signal-to-noise ratio (PSNR), similarity structural index measurement (SSIM), and contrast-to-noise ratio (CNR) metrics. Next, after improving and enhancing the low fluence light source photoacoustic imaging systems, we report molecular and functional imaging application for LED-based photoacoustic imaging. We demonstrate detection of reactive oxygen and nitrogen species (RONS) with a near-infrared (NIR) absorbing small molecule (CyBA) and LED-based photoacoustic imaging equipment. CyBA produces increasing photoacoustic signal in response to peroxynitrite (ONOO−) and hydrogen peroxide (H2O2) with photoacoustic signal increases of 3.54 and 4.23-fold at 50 [mu]M of RONS at 700 nm, respectively. We also introduced photoacoustic imaging as a non-invasive method for detecting early tissue damage that cannot be visually observed while also staging the disease using quantitative image analysis. Finally, here we introduce polyacrylamide (PAA) hydrogel as a candidate material for fabricating stable phantoms with well-characterized optical and acoustic properties that are biologically relevant over a broad range of system design parameters. These phantoms may also facilitate future standardization of performance test methodology.


Optical MEMS

Optical MEMS
Author: Huikai Xie
Publisher: MDPI
Total Pages: 176
Release: 2019-08-06
Genre: Technology & Engineering
ISBN: 3039213032

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This book is a printed edition of the Special Issue Optical MEMS that was published in Micromachines


Quantification of Biophysical Parameters in Medical Imaging

Quantification of Biophysical Parameters in Medical Imaging
Author: Ingolf Sack
Publisher: Springer
Total Pages: 0
Release: 2024-10-28
Genre: Medical
ISBN: 9783031618451

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The second edition of this book offers six new chapters covering the latest developments in quantitative medical imaging, including artificial intelligence, MRI mapping, sonography, elastography and cardiac CT. All the other existing chapters have been updated and expanded, many with new text and figures, to reflect the rapid translation and advancement of technology in this exciting area of biomedical research. This updated edition presents fundamental knowledge on the imaging quantification of biophysical parameters for clinical diagnostic purposes. Clinical imaging scanners are considered by the authors as physical measurement systems capable of quantifying intrinsic parameters for the representation of the constitution and biophysical properties of tissues in vivo. In one respect, this approach fosters the development of new imaging methods for highly reproducible, system-independent, and quantitative biomarkers. These methods are greatly detailed in the book. Alternatively, this new edition equips the reader with a better understanding of how the physical properties of tissues interact with signal generation in medical imaging, opening up new insights into the complex and fascinating relationship between structure and function in living tissues. This updated edition is of interest to all those who recognize the limitations of clinical diagnosis based primarily on visual inspection of images, and who wish to learn more about the diagnostic potential of quantitative, biophysically-based medical imaging markers, as well as the challenges posed by the scarcity of such markers for next-generation imaging technologies.