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Preliminary Design of an Active Stabilization Assistive Eating Device for People Living with Movement Disorders

机译:行动障碍者主动稳定辅助进食装置的初步设计

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This paper presents the development of a new active assistive eating device, which aims to stabilize the movements of people living with movement disorders, such as spasticity and ataxia. Many people living with upper-body incapacities are unable to eat on their own, due to movement disorders (ex. tremors, spastic motions, lack of muscular tone), resulting from various ailments like Cerebral palsy, Parkinson's disease, Dystonia, Multiple sclerosis, strokes and Muscular dystrophy. Our past work focused on the development of a purely mechanical device, which involved damping of the system via passive mechanical dampers. This paper extends said work by using active stabilization of user movements. The active assistance enables the design of intelligent algorithms that can assist human movements more efficiently. This active version has the benefits of being easily adjustable; the level of damping can be adjusted in real-time, depending on the user movement; different control modes are offered, and the guiding of user movements is also allowed. Firstly, the mechanical design of the device is presented, followed by the damping arrangement, the electronic design, the control algorithms and finally, the preliminary experiments are mentioned.
机译:本文介绍了一种新型的主动辅助饮食设备的开发,该设备旨在稳定患有运动障碍(例如痉挛和共济失调)的人的运动。由于上肢无力而生活不便的许多人由于运动障碍(例如震颤,痉挛性运动,缺乏肌肉紧张)而无法进食,这是由于各种疾病引起的,例如脑瘫,帕金森氏病,肌张力障碍,多发性硬化症,中风和肌肉营养不良。我们过去的工作重点是开发纯机械设备,其中涉及通过被动机械阻尼器对系统进行阻尼。本文通过使用用户动作的主动稳定来扩展上述工作。主动辅助功能可以设计可以更有效地协助人类运动的智能算法。此活动版本的优点是易于调整;阻尼水平可以实时调整,具体取决于用户的运动;提供了不同的控制模式,并且还允许引导用户运动。首先介绍了设备的机械设计,然后介绍了阻尼装置,电子设计,控制算法,最后提到了初步实验。

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