Redha TaiarORCID icon for 0000-0002-0227-3884

Université de Reims Champagne-Ardenne France

Professor at the University of Reims Champagne, France. He was the head of the Master of Biomechanics, Ergonomics and Clinical Research, Head of the University diploma of Podiatrics, Head of the University diploma of Ergonomics, and head of the laboratory of Biomechanics at the University of Reims, vice head of the department of Sport Science. He is the Head of RTBE (Redha Taiar Biomechanical Engineering) Society, developed for sports and medical advice for the industry. He is also Vice Head of the Congress of Physical Medicine and Rehabilitation Society (SOFMER) from October 2013 in Reims city. His researches focus on the industry engineering for medicine and high-level sport. He is an engineer for different industries like Arena for the high-level sport and Sidas, Medicapteur for the medical development. For industry workers, his last work was for the Notrax society, the Conception and validation of anti-fatigue mats. For sport, his last works focus on the development of swimsuits for triathlon and swimming for the Brazil Olympic Games (2016) and the suit fabrics for the skiing Olympic Games at Sochi in 2014. He is a specialist in the Biomechanics of health, disease, and rehabilitation.

Redha Taiar

8books edited

9chapters authored

Latest work with IntechOpen by Redha Taiar

This book offers a range of principles, methods, techniques, and tools to provide the reader with a precise understanding of variables that improve human behaviour. The text considers physical, mechanical, physiological, psychological, and biomechanical aspects, illustrated by various key application domains, including injury prevention, human posture, and musculoskeletal disorders. The book includes three sections: 1. Biomechanics in Health, 2. Biomechanics and Balance and 3. Biomechanics and Prevention of Injuries. This book is divided into seven chapters, providing valuable tools for measuring, generating, simulating and processing biomechanics with clinical and experimental applications in medicine. Engineers, researchers, and students from biomedical engineering and health sciences, as well as industrial professionals, can benefit from this compendium of knowledge on the utilization of biomechanics as a tool for enhancing human well-being and preventing injuries.

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