Ultrasound is used for the evaluation of elastic properties in materials. Though most associated in the mind of the public with medical imaging, especially during pregnancy, it has a much wider field of application and sonographic techniques are routinely employed for non-destructive evaluation, telecommunications, cleaning, sonochemistry and more.
This book provides a review of state-of-art technological developments in applied ultrasonics with a focus on recent advances in ultrasonic research, covering metrological applications, non-destructive evaluation, sensing, devices, and physics, as well as medical diagnosis and treatment. The first part of this book focuses on the physics of acoustic waves, and their propagation and addresses viscoelasticity, as well as metrological applications including laser ultrasonics. Part two reviews recent developments of importance to industrial applications, whilst the final part introduces developments in biomedical applications.
The book will be an essential resource and instructional guide to the field for a broad range of students, researchers, and engineers. The reader can readily understand the direction of research in the subject, appreciate the numerous possibilities of using ultrasound, and grasp the potential applications of the phenomenon and current challenges. The book includes chapters from authors with expertise in different areas of ultrasonics and its application. Published in collaboration with the Institute for Ultrasonic Electronics, the authors are regular participants in the Symposium on Ultrasonic Electronics, which has been held for the past 40 years in Japan and Korea.
This book provides a review of state-of-art technological developments in applied ultrasonics with a focus on recent advances in ultrasonic research, covering metrological applications, non-destructive evaluation, sensing, devices, and physics, as well as medical diagnosis and treatment. The first part of this book focuses on the physics of acoustic waves, and their propagation and addresses viscoelasticity, as well as metrological applications including laser ultrasonics. Part two reviews recent developments of importance to industrial applications, whilst the final part introduces developments in biomedical applications.
The book will be an essential resource and instructional guide to the field for a broad range of students, researchers, and engineers. The reader can readily understand the direction of research in the subject, appreciate the numerous possibilities of using ultrasound, and grasp the potential applications of the phenomenon and current challenges. The book includes chapters from authors with expertise in different areas of ultrasonics and its application. Published in collaboration with the Institute for Ultrasonic Electronics, the authors are regular participants in the Symposium on Ultrasonic Electronics, which has been held for the past 40 years in Japan and Korea.
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