Tecnalia Serbia doo, 11000, Belgrade, Serbia.
School of Electrical Engineering, University of Belgrade, 11000, Belgrade, Serbia.
Sci Rep. 2024 Aug 28;14(1):19969. doi: 10.1038/s41598-024-70990-7.
This study presents a detailed psychometric evaluation of a novel high-resolution electrotactile interface, which is developed to provide users with 3D spatial information and facilitate enhanced interaction with a Supernumerary Robotic Limb (SRL). The research introduces a novel electrotactile system that employs a multi-pad electrode configuration on the thigh, aimed at delivering intuitive feedback to users about the position of the SRL in a three-dimensional space. The interface's effectiveness was assessed through a series of psychometric tests, including static spatial discrimination, target-reaching with spatial feedback, frequency discrimination, and combined spatial/frequency modulation. The key findings demonstrate that participants could differentiate between 30 electrode pads with an average success rate of 62.7% when they were activated statically, while in the dynamic target-reaching task, the success rate increased to 88.1%. Frequency discrimination tests further revealed that four frequency levels could be distinguished with 86.0% success rate in single-pad feedback while the performance decreased to 74.3% in multi-pad distributed feedback. Finaly, in the closed-loop test with mixed spatial and frequency modulation, participants achieved an overall success rate of 78.8% in target reaching across 10 × 4 discrete 2D space. These results highlight the interface's capability to transmit high-resolution spatial information through electrotactile feedback, offering a foundation for future applications in tactile-based navigation and control systems.
本研究对一种新型高分辨率电触觉界面进行了详细的心理评估,该界面旨在为用户提供 3D 空间信息,并促进与额外机器人肢体(SRL)的增强交互。该研究引入了一种新型电触觉系统,该系统在大腿上采用多垫电极配置,旨在为用户提供关于 SRL 在三维空间中位置的直观反馈。通过一系列心理测量测试评估了界面的有效性,包括静态空间辨别、具有空间反馈的目标追踪、频率辨别以及空间/频率组合调制。主要发现表明,参与者可以在电极垫被静态激活时以平均成功率 62.7%区分 30 个电极垫,而在动态目标追踪任务中,成功率增加到 88.1%。频率辨别测试进一步表明,在单垫反馈中可以区分四个频率水平,成功率为 86.0%,而在多垫分布式反馈中性能下降至 74.3%。最后,在具有混合空间和频率调制的闭环测试中,参与者在跨越 10×4 个离散 2D 空间的目标追踪中达到了 78.8%的总体成功率。这些结果突出了该界面通过电触觉反馈传输高分辨率空间信息的能力,为未来基于触觉的导航和控制系统中的应用奠定了基础。