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A pneumatic-muscle-actuator-driven knee rehabilitation device for CAM therapy

机译:用于CAM治疗的气动肌肉执行器驱动的膝关节康复装置

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In this paper a novel knee joint rehabilitation device made for controlled active motion (CAM) therapy is presented and tested. More precisely, the system is a redesign of an originally passive CAM device, called CAMOped. Instead of a break, the adjustable resistance, which is needed for CAM therapy, is now provided via a torque-controlled pneumatic-muscle-actuator-driven joint. These actuators are inherently compliant and can produce both a variable restistance and, by co-contraction, a variable stiffness. It will be shown that, by measuring the foot contact forces and using them as feedback information, the foot load can be adjusted very precisely up to 100 N. Furthermore, it will be demonstrated that, in contrast to passive systems, the presented active systems is capable of varying the resistance while the device is in use. This facilitates adapting the resistance to the patient’s needs in real time and to use joint-angle- or foot-position-dependent resistance curves.
机译:在本文中,提出并测试了一种新型的用于受控主动运动(CAM)治疗的膝关节康复设备。更准确地说,该系统是对原始无源CAM设备(称为CAMOped)的重新设计。现在可以通过扭矩控制的气动肌肉执行器驱动的关节提供CAM治疗所需的可调电阻,而不是中断。这些执行器具有内在的柔韧性,可以产生可变的抵抗力,并通过共同收缩产生可变的刚度。结果表明,通过测量脚部的接触力并将其用作反馈信息,可以非常精确地将脚部载荷调节到100N。此外,与无源系统相比,所展示的有源系统也得到了证明。在使用该设备时能够改变电阻。这有助于实时调整阻力以适应患者的需求,并可以使用取决于关节角度或脚位的阻力曲线。

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