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Multi-modal Sensory Feedback System for Upper Limb Amputees

机译:用于上肢的多模态感觉反馈系统

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Providing sensory feedback for myoelectric prosthetic users can not only increase the manipulation ability but can also introduce a feeling of embodiment. Previous research has demonstrated the feasibility of providing mechanotactile or vibrotactile feedback on the remaining stumps of amputees. To improve the recognition rate and reduce mental work load when identifying stimulation patterns, we propose a multi-modal sensory feedback system for upper limb amputees. The system consists of five tactile sensors, Bluetooth wireless communication modules, and a custom-designed multi-modal stimulation array incorporating vibrotactile and mechanotactile stimulation modalities. Three amputees (two with phantom map and one without phantom map) tested the system in localization and stimulation intensity identification tasks. Experimental results show the effectiveness of the multi-modal stimulation compared with single modal stimulation. To the best of our knowledge, this is the first attempt to combine vibrotactile and mechanotactile stimulation in a sensory feedback system for upper limb amputees.
机译:为肌电假肢用户提供感觉反馈,不仅可以增加操纵能力,也可以引入一个实施例的感觉。以前的研究表明,在剩余的患者的剩余树桩上提供机械手段或振动反馈的可行性。为了提高识别率并减少识别刺激模式时的心理工作负载,我们提出了一种用于上肢逐渐的多模态感觉反馈系统。该系统由五个触觉传感器,蓝牙无线通信模块以及包含振动和机械触发方式的定制设计的多模态刺激阵列。三个令人作呕的(两个带有幻影地图和一个没有幻影地图的两个)在本地化和刺激强度识别任务中测试了系统。实验结果表明,与单型模态刺激相比,多模态刺激的有效性。据我们所知,这是第一次尝试将振动触觉和机械刺激在上肢患者的感官反馈系统中结合。

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