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Introduction and initial exploration of an Active/Passive Exoskeleton framework for portable assistance

机译:主动辅助/被动外骨骼框架的介绍和初步探索

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Assistive devices such as exoskeletons are capable of providing rehabilitative improvement and independence for individuals suffering from musculoskeletal conditions. Typical devices use either active assistance methods such as DC motors or passive methods such as springs. Active methods require a continuous power input, while passive methods are limited by user capability. This work introduces an Active/Passive EXoskeleton (APEX) framework. This device can passively provide continuous assistance, only requiring energy to change the dynamic properties of the passive state. The first prototype (APEX-α) is introduced and tested on six healthy subjects who performed hammer curls. It was found that changes in the passive state of the APEX-α affect the number of curls performed by an individual. By changing the passive state of the exoskeleton, increases in curl count of 65 – 92% were observed. This indicates the potential for such devices to provide assistance to an individual through the use of lightweight, energy efficient active/passive actuators.
机译:诸如骨骼外骨骼的辅助装置能够为患有肌肉骨骼疾病的个体提供康复性改善和独立性。典型的设备使用主动辅助方法(例如DC电动机)或被动方法(例如弹簧)。主动方法需要连续的功率输入,而被动方法则受用户能力的限制。这项工作介绍了主动/被动外骨骼(APEX)框架。该设备可以被动地提供持续的帮助,仅需要能量来改变被动状态的动态特性。引入了第一个原型(APEX-α),并在进行锤子卷曲的六个健康受试者上进行了测试。发现APEX-α的被动状态的改变会影响个人进行的卷发次数。通过改变外骨骼的被动状态,可以观察到卷曲数增加了65 – 92%。这表明此类设备有可能通过使用轻巧,节能的主动/被动执行器为个人提供帮助。

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