会议论文详细信息
19th Argentinean Bioengineering Society Congress
Characterization of a Pneumatic Artificial Muscle for its application in an Active Ankle-Foot Orthosis
Lescano, C.^1,3 ; Herrera, C.^1 ; Mirabal, R.^1 ; Rodrigo, R.^2 ; Rodrigo, S.^1
Gabinete de Tecnología Médica, Argentina^1
Laboratorio de Metrología, Departamento de Electromecánica Facultad de Ingeniería, Universidad Nacional de San Juan, Av. Libertador, San-Martín 1109 Oeste, San Juan, Argentina^2
CONICET: Consejo Nacional de Investigaciones Científicas y Técnicas, Argentina^3
关键词: Active ankle-foot-orthosis;    Actuator performance;    Experimental test;    ITS applications;    Locomotor disorders;    Movement disorders;    Pneumatic artificial muscle;    Robotic exoskeletons;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/477/1/012040/pdf
DOI  :  10.1088/1742-6596/477/1/012040
来源: IOP
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【 摘 要 】

The training of lower limbs with robotic exoskeletons or active orthoses has proven to be an effective tool to help patients with various types of neurological movement disorders, to recover their functional ambulation capacity. A key component to achieve this purpose is the type of active element used to compensate for muscle weakness, typically observed in such locomotor disorders. Based on these considerations, this paper presents the results of an experimental test developed for calibration, tuning and behavioral identification of a commercial pneumatic artificial muscle Festo®, with view to its application as active element of an active ankle-foot orthosis prototype for human gait rehabilitation. It is expected that such prototype would enable to recover the ankle joint function in patients with Myelomeningocele. The actuator performance analysis from the achieved tests, as well as the study of gait patterns in persons with Myelomeningocele, evidence the potentiality of this actuator as an active element of a robotic exoskeleton applied to human gait rehabilitation.

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