Human Motion Capture and Identification for Assistive Systems Design in Rehabilitation. Pubudu N. Pathirana

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      The right of Pubudu N. Pathirana, Saiyi Li, Yee Siong Lee and Trieu Pham to be identified as the authors of this work has been asserted in accordance with law.

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       Library of Congress Cataloging‐in‐Publication Data

      Names: Pathirana, Pubudu N., author. | Li, Saiyi, author. | Lee, Yee Siong, author. | Pham, Trieu, author.

      Title: Human motion capture and identification for assistive systems design in rehabilitation / Pubudu N. Pathirana, Saiyi Li, Yee Siong Lee, Trieu Pham.

      Description: Hoboken, NJ : Wiley, 2021. | Includes bibliographical references and index.

      Identifiers: LCCN 2020043708 (print) | LCCN 2020043709 (ebook) | ISBN 9781119515074 (cloth) | ISBN 9781119515234 (adobe pdf) | ISBN 9781119515210 (epub)

      Subjects: LCSH: Rehabilitation technology. | Musculoskeletal system–Wounds and injuries–Treatment. | Neuromuscular diseases–Treatment. | Medical rehabilitation. | Telecommunication in medicine. | Human locomotion–Measurement. | Human locomotion–Computer simulation.

      Classification: LCC RM950 .P38 2021 (print) | LCC RM950 (ebook) | DDC 617/.03–dc23

      LC record available at https://lccn.loc.gov/2020043708

      LC ebook record available at https://lccn.loc.gov/2020043709

      Cover Design: Wiley

      Cover Image: © Westend61/Getty Images

      1

      1.1 Human Body – Kinematic Perspective

      The muscular system consists of over 700 muscles, which can be classified mainly into skeletal, cardiac and smooth muscles. Facial and tongue muscles are special cases with the tongue having the largest concentration of muscles. Based on the functionality, the muscles can also be classified as involuntary (cardiac, smooth) and voluntary (skeletal).

      Human body kinematic movements can be classified into two main types – voluntary and involuntary. Execution of daily activities and specialised activities with complete cognitive control causes voluntary movements and such movement is the expression of a thought through action. Almost all areas of the central nervous system are involved in the execution of voluntary movements and the main flow of information may begin in cognitive cortical areas in the frontal lobe or in sensory cortical areas in the occipital, parietal and temporal lobes. Ultimately, information flows from motor areas in the frontal lobe through the brain stem and spinal cord to the motor neurones [110].

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