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Study and Experimentation of Innovative Textile Pneumatic Muscle Prototypes.

, , , , and . RAAD, volume 49 of Mechanisms and Machine Science, page 854-861. Springer, (2017)

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Preliminary Design of an Electropneumatic Automatic Machine for Herbaceous Grafting., , , , , , , and . RAAD, volume 49 of Mechanisms and Machine Science, page 255-263. Springer, (2017)Textile Rotary Pneumatic Actuator for Rehabilitation., , and . RAAD, volume 49 of Mechanisms and Machine Science, page 727-734. Springer, (2017)Design and study of a pneumatically actuated inverted pendulum system controlled using a programmable logic controller., , , and . J. Syst. Control. Eng., (2020)Development of a 4-DoF Active Upper Limb Orthosis., , and . Robotics, 11 (6): 122 (2022)Development of an Active Orthosis for Inferior Limb with Light Structure., , and . RAAD, volume 49 of Mechanisms and Machine Science, page 833-841. Springer, (2017)Development of a Straight Fibers Pneumatic Muscle., , , and . Int. J. Autom. Technol., 12 (3): 413-423 (2018)Design and development of a pneumatic anthropomorphic hand., , , and . J. Field Robotics, 17 (1): 1-15 (2000)Bistable Fluidic Laminar Amplifiers for Optopneumatic Interfaces., , , , and . J. Robotics Mechatronics, 15 (4): 377-383 (2003)Multi-Fingered Robot Hand with Very Simple Actuation and Control., , and . J. Robotics Mechatronics, 3 (5): 409-415 (1991)P.I.G.R.O.: An Active Exoskeleton for Robotic Neurorehabilitation Training Driven by an Electro-Pneumatic Control., , , , , , , , and . RAAD, volume 49 of Mechanisms and Machine Science, page 845-853. Springer, (2017)