Nonlinear Dynamics Approach to Robotic Capsule Endoscopy

· Academic Press
Ebook
360
Pages
Eligible
This book will become available on September 1, 2025. You will not be charged until it is released.

About this ebook

Nonlinear Dynamics Approach to Robotic Capsule Endoscopy is a comprehensive and cutting-edge resource that delves into the development and advancements of self-propelled capsule robots used in medical applications. This book offers a captivating journey from the early stages of conceptualization to the final proof-of-concept demonstrations, featuring a strong focus on applied dynamics principles. It presents a wealth of knowledge and techniques in mathematical modelling that enable robots to navigate and propel themselves within the intricate environment of the human intestine. This book is an essential resource for researchers, professors, engineers, and postgraduate students seeking to develop groundbreaking medical devices and computational tools. Its multidisciplinary approach ensures that readers gain a comprehensive understanding of the subject matter, empowering them to design new driving technologies for capsule endoscopy that push the boundaries of current medical practices. This book combines theoretical foundations, mathematical modelling methodologies, and practical insights to facilitate the development of cutting-edge medical devices. Its comprehensive coverage make it an essential tool for anyone involved in the fields of applied mathematics, robotics, and biomechanical engineering, offering invaluable guidance in designing and optimizing driving technologies for capsule endoscopy. - Provides modelling knowledge and techniques for designing and optimizing robots for intestinal applications - Provides methods and approaches that cover a broad range of engineering applications, showcasing the practicality and versatility of the computational tools presented - Combines robotics, applied mathematics, and engineering to address the challenges of developing medical robots for gastrointestinal endoscopic procedures and therapies, offering unique insights into the locomotion of capsule robots within the context of intestinal anatomy

About the author

Yang Liu is an associate professor in dynamics and control in the engineering department of the University of Exeter, United Kingdom, and an honorary lecturer at the endoscopy department of the Royal Devon University Healthcare NHS Foundation Trust. Professor Liu was the lead guest editor of a special issue on "Self-Propelled Robots: From Theory to Applications in Meccanica. He has been invited to give talks on a number of prestigious international conferences, including the International Conference on Nonlinear Dynamics in Engineering and the International Conference on Recent Advances in Nonlinear Mechanics.

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