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Controlling a virtual forehand prosthesis using an adaptive and affective Human-Machine Interface

机译:使用自适应和情感性人机界面控制虚拟正手假体

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This paper presents the design of an adaptable Human-Machine Interface (HMI) for controlling virtual forearm prosthesis. Direct physical performance measures (obtained score and completion time) for the requested tasks were calculated. Furthermore, bioelectric signals from the forehead were recorded using one pair of electrodes placed on the frontal region of the subject head to extract the mental (affective) measures while performing the tasks. By employing the proposed algorithm and above measures, the proposed HMI can adapt itself to the subject''s mental states, thus improving the usability of the interface. The quantitative results from 15 subjects show that the proposed HMI achieved better physical performance measures in comparison to a conventional non-adaptive myoelectric controller (p < 0.001).
机译:本文介绍了一种用于控制虚拟前臂假体的自适应人机界面(HMI)的设计。计算出所要求任务的直接物理性能量度(获得的分数和完成时间)。此外,使用放置在受检者头部正面区域上的一对电极记录前额的生物电信号,以在执行任务时提取精神(情感)措施。通过采用提出的算法和以上措施,提出的HMI可以使自己适应受试者的心理状态,从而提高了界面的可用性。 15位受试者的定量结果表明,与传统的非自适应肌电控制器相比,拟议的HMI达到了更好的物理性能指标(p <0.001)。

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