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    ISBN: 9783031790256
    Language: English
    Pages: 1 Online-Ressource (IX, 220 p. 169 illus., 156 illus. in color.)
    Edition: 1st ed. 2025
    Series Statement: Synthesis Lectures on Biomedical Engineering
    Parallel Title: Erscheint auch als
    Parallel Title: Erscheint auch als
    DDC: 610.28
    Keywords: Biomedical engineering ; Therapeutics ; Therapeutics ; Génie biomédical ; Thérapeutique ; biomedical engineering ; treating (health care function)
    Abstract: This open access book unveils groundbreaking advancements in non-invasive therapeutic technologies, focusing on the integration of digital twins and artificial intelligence to enhance circulatory health. At the heart of this book is the exploration of innovative solutions that promise to revolutionize medical practices and patient care. The chapters delve into critical topics such as ultrasonic and vibrational blood flow activation, acoustic activation of human circulatory parameters, and acoustofluidic separation of bioparticles. Readers will discover how low-frequency ultrasound can safely dissociate erythrocytes from aggregates, reduce blood pressure and improve blood gas metabolism within minutes, and manage pulmonary hypertension without medication. The book also highlights the development of smart devices like the "Vilim ball" for tremor therapy and other patented technologies aimed at improving blood flow in diabetic patients and those with mobility impairments. This essential volume is a must-read for researchers, clinicians, and practitioners in the fields of biomedical engineering, mechatronics, and healthcare technology. It offers invaluable insights into cutting-edge therapeutic strategies that are set to transform both clinical settings and home care environments. In particular, this book shows the following features: New therapeutic strategies revealed Individualized technologies proposed Bioparticle separation devices developed
    Description / Table of Contents: A narrative review of noninvasive therapy -- Acoustic activation of human circulatory parameters -- Vibrational activation of blood flow -- Acoustofluidic separation of bioparticles.
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