New Trends in Medical and Service Robotics

MESROB 2025
Artikelnummer: 978-3-031-96080-2
Einband: Fester Einband
Verfügbarkeit: Lieferbar in ca. 20-45 Arbeitstagen
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This book contains the papers of the 9th International Workshop on Medical and Service Robots (MESROB) which was held in Poitiers, France, on July 2-4, 2025. The main topics include: design of medical devices, kinematics and dynamics for medical robotics, exoskeletons and prostheses, anthropomorphic hands, therapeutic robots and rehabilitation, cognitive robots, humanoid and service robots, assistive robots and elderly assistance, surgical robots, human–robot interfaces, haptic devices, medical treatments, medical lasers, and surgical planning and navigation. The contributions, which were selected by means of a rigorous international peer-review process, highlight numerous exciting ideas that will spur novel research directions and foster multidisciplinary collaboration among different specialists, demonstrating that medical and service robotics will drive the technological and societal change in the coming decades.

Chapter "A Pneumatic HandHeld Device for Finger Active Tele-rehabilitation" is available open access under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License via link.springer.com.

This book contains the papers of the 9th International Workshop on Medical and Service Robots (MESROB) which was held in Poitiers, France, on July 2-4, 2025. The main topics include: design of medical devices, kinematics and dynamics for medical robotics, exoskeletons and prostheses, anthropomorphic hands, therapeutic robots and rehabilitation, cognitive robots, humanoid and service robots, assistive robots and elderly assistance, surgical robots, human–robot interfaces, haptic devices, medical treatments, medical lasers, and surgical planning and navigation. The contributions, which were selected by means of a rigorous international peer-review process, highlight numerous exciting ideas that will spur novel research directions and foster multidisciplinary collaboration among different specialists, demonstrating that medical and service robotics will drive the technological and societal change in the coming decades.

Chapter "A Pneumatic HandHeld Device for Finger Active Tele-rehabilitation" is available open access under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License via link.springer.com.

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VerlagSpringer International Publishing
EinbandFester Einband
Erscheinungsjahr2025
Seitenangabe567 S.
AusgabekennzeichenEnglisch
AbbildungenXVIII, 567 p. 379 illus., 345 illus. in color., schwarz-weiss Illustrationen, farbige Illustrationen
MasseH23.5 cm x B15.5 cm
CoverlagSpringer (Imprint/Brand)
ReiheMechanisms and Machine Science
AutorLaribi, Med Amine (Hrsg.) / Carbone, Giuseppe (Hrsg.) / Pisla, Doina (Hrsg.) / Zeghloul, Said (Hrsg.)

Alle Bände der Reihe "Mechanisms and Machine Science"

Über den Autor Med Amine (Hrsg.) Laribi

Med Amine Laribi is a Professor in the Faculty of Fundamental and Applied Sciences at the University of Poitiers (UP), where he teaches robotics and mechanics. He holds a Mechanical Engineering Degree with a specialization in Mechanical Design from École Nationale d'Ingénieurs de Monastir (E.N.I.M.), which he obtained in 2001. He earned an M.S. degree in Mechanical Design in 2002 and a Ph.D. in Mechanics from the University of Poitiers in 2005. Additionally, he received a National Habilitation in Mechanics from the University of Poitiers in 2018. His research interests include robot design, mechanism synthesis, cable-driven robots, parallel robots, haptic interfaces, and collaborative robots.Carl Nelson is a Professor in the Department of Mechanical and Materials Engineering at the University of Nebraska-Lincoln. He obtained his degrees in Mechanical Engineering: a Bachelor of Science (B.S.) from The University of Oklahoma in 2000, a Master of Science (M.S.) from Purdue University in 2002, and a Doctorate (Ph.D.) from Purdue University in 2005. His research activities encompass robot design and kinematics, medical devices, and the medical applications of robotics.

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