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机器人界面在认知心理学和体现研究中的应用:研究路线图。

Robotic interfaces for cognitive psychology and embodiment research: A research roadmap.

机构信息

Elastic Lightweight Robotics Group, Robotics Research Institute, Technische Universität Dortmund, Dortmund, Germany.

Institute for Mechatronic Systems in Mechanical Engineering, Technische Universität Darmstadt, Darmstadt, Germany.

出版信息

Wiley Interdiscip Rev Cogn Sci. 2019 Mar;10(2):e1486. doi: 10.1002/wcs.1486. Epub 2018 Nov 28.

Abstract

Advanced human-machine interfaces render robotic devices applicable to study and enhance human cognition. This turns robots into formidable neuroscientific tools to study processes such as the adaptation between a human operator and the operated robotic device and how this adaptation modulates human embodiment and embodied cognition. We analyze bidirectional human-machine interface (bHMI) technologies for transparent information transfer between a human and a robot via efferent and afferent channels. Even if such interfaces have a tremendous positive impact on feedback loops and embodiment, advanced bHMIs face immense technological challenges. We critically discuss existing technical approaches, mainly focusing on haptics, and suggest extensions thereof, which include other aspects of touch. Moreover, we point out other potential constraints such as limited functionality, semi-autonomy, intent-detection, and feedback methods. From this, we develop a research roadmap to guide understanding and development of bidirectional human-machine interfaces that enable robotic experiments to empirically study the human mind and embodiment. We conclude the integration of dexterous control and multisensory feedback to be a promising roadmap towards future robotic interfaces, especially regarding applications in the cognitive sciences. This article is categorized under: Computer Science > Robotics Psychology > Motor Skill and Performance Neuroscience > Plasticity.

摘要

先进的人机界面使机器人设备能够适用于研究和增强人类认知。这使得机器人成为强大的神经科学工具,可用于研究人类操作者和操作的机器人设备之间的适应过程,以及这种适应如何调节人类体现和体现认知。我们分析了双向人机界面 (bHMI) 技术,以便通过传出和传入通道在人与机器人之间进行透明的信息传输。即使此类接口对反馈回路和体现具有巨大的积极影响,先进的 bHMI 也面临巨大的技术挑战。我们批判性地讨论了现有的技术方法,主要集中在触觉上,并提出了扩展方法,其中包括触摸的其他方面。此外,我们还指出了其他潜在的限制因素,例如功能有限、半自主性、意图检测和反馈方法。由此,我们制定了一个研究路线图,以指导双向人机界面的理解和开发,从而使机器人实验能够对人类思维和体现进行实证研究。我们得出的结论是,灵巧控制和多感觉反馈的整合是未来机器人界面的一个很有前途的途径,特别是在认知科学应用方面。本文属于以下类别: 计算机科学 > 机器人学 心理学 > 运动技能和表现 神经科学 > 可塑性。

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