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Multi-Modal Human-Machine Control Interfaces of Upper Limb Motorized Exoskeletons for Severely Impaired Patients

机译:重症患者上肢电动外骨骼的多模式人机控制界面

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The aim of this study concerns the evaluation and comparison of different Human-Machine Interfaces for the control of an upper limb motorized exoskeleton for severely impaired patients. Different approaches (i.e. manual, vocal, visual control) are tested in a simulation environment on three subjects affected by muscular dystrophy with the aim of assessing the capability of the system to interact with the user and vice versa. A Graphical User Interface shows the simulated behavior of the exoskeleton to the user which has to perform reaching tasks in the space by moving the exoskeleton end-effector to defined virtual targets that are displayed on the screen. Specific assessment of the interaction of the user with each control interface is achieved, while a quantitative evaluation of the usability of all the three approaches is provided by a System Usability Scale (SUS) questionnaire. All patients were able to interact with all control interfaces without difficulties and to complete reaching tasks in simulation. SUS scores showed overall good usability of the Human-Machine Control Interfaces suggesting that the manual and the vocal control interfaces are preferred by the subjects.
机译:这项研究的目的涉及评估和比较不同的人机界面,以控制严重受损患者的上肢机动性外骨骼。在模拟环境中对受肌肉营养不良影响的三个对象测试了不同的方法(即手动,声音,视觉控制),目的是评估系统与用户交互的能力,反之亦然。图形用户界面向用户显示了外骨骼的模拟行为,该用户必须通过将外骨骼末端执行器移动到屏幕上显示的已定义虚拟目标来执行在空间中的伸手可及的任务。实现了用户与每个控制界面交互的特定评估,而系统可用性量表(SUS)问卷提供了对所有三种方法的可用性的定量评估。所有患者都能够轻松地与所有控制界面进行交互,并能够完成模拟中的任务。 SUS分数显示出人机控制界面总体上的良好可用性,表明受试者更喜欢手动和声音控制界面。

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