协同幻觉:通过动觉幻觉手部运动增强伪牵引力的感知效果

IF 2.4 3区 计算机科学 Q2 COMPUTER SCIENCE, CYBERNETICS IEEE Transactions on Haptics Pub Date : 2024-04-08 DOI:10.1109/TOH.2024.3386199
Takuya Noto;Takuto Nakamura;Tomohiro Amemiya
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引用次数: 0

摘要

我们研究了拉力错觉与动觉错觉相结合对力反馈装置中感知力强度的增强。牵拉错觉(即被拉或被推的感觉)是由施加在指尖上的不对称振动引起的,从而实现了小、轻、不接地的力反馈装置。然而,感知力强度是有限的。我们专注于动觉错觉,这是一种现象,在这种现象中,肢体在肌肉伸展方向的运动被错觉地感知到,通过向肌腱或肌肉呈现振动,作为一种错觉,可以增强感知到的牵拉错觉的强度。此外,我们通过结合手腕肌腱振动刺激引起的动觉错觉和牵拉错觉来研究力感觉的感知特征。研究结果表明,即使同时有手腕肌腱振动刺激,也能准确地感知到牵拉错觉的方向。重要的是,结果表明手腕上的肌腱振动,而不是手腕上的皮肤振动,增强了指尖牵拉错觉的感知力强度。这些发现表明了扩大拉错觉表达能力的潜力。
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Synergistic Illusions: Enhancing Perceptual Effects of Pseudo-Attraction Force by Kinesthetic Illusory Hand Movement
We investigated the enhancement of the perceived force strength in force feedback devices by combining the pulling illusion with kinesthetic illusions. The pulling illusion (i.e., a sensation of being pulled or pushed) is induced by asymmetric vibrations applied to the fingertips, enabling the implementation of small, lightweight, and ungrounded force feedback devices. However, the perceived force intensity is limited. We focused on the kinesthetic illusion, a phenomenon in which the movement of a limb in the direction of muscle extension is illusively perceived by presenting vibrations to tendons or muscles as an illusion that could enhance the perceived strength of the pulling illusion. Moreover, we investigated the perceptual characteristics of force sensation by combining a kinesthetic illusion induced by wrist tendon vibration stimulation with a pulling illusion. The findings demonstrate that the direction of the pulling illusion was accurately perceived, even with simultaneous wrist tendon vibration stimuli. Importantly, the results suggest that tendon vibration on the wrist, rather than cutaneous vibration on the wrist, enhances the perceived force intensity of the pulling illusion at the fingertips. These findings indicate the potential for expanding the expressive capability of the pulling illusion.
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来源期刊
IEEE Transactions on Haptics
IEEE Transactions on Haptics COMPUTER SCIENCE, CYBERNETICS-
CiteScore
5.90
自引率
13.80%
发文量
109
审稿时长
>12 weeks
期刊介绍: IEEE Transactions on Haptics (ToH) is a scholarly archival journal that addresses the science, technology, and applications associated with information acquisition and object manipulation through touch. Haptic interactions relevant to this journal include all aspects of manual exploration and manipulation of objects by humans, machines and interactions between the two, performed in real, virtual, teleoperated or networked environments. Research areas of relevance to this publication include, but are not limited to, the following topics: Human haptic and multi-sensory perception and action, Aspects of motor control that explicitly pertain to human haptics, Haptic interactions via passive or active tools and machines, Devices that sense, enable, or create haptic interactions locally or at a distance, Haptic rendering and its association with graphic and auditory rendering in virtual reality, Algorithms, controls, and dynamics of haptic devices, users, and interactions between the two, Human-machine performance and safety with haptic feedback, Haptics in the context of human-computer interactions, Systems and networks using haptic devices and interactions, including multi-modal feedback, Application of the above, for example in areas such as education, rehabilitation, medicine, computer-aided design, skills training, computer games, driver controls, simulation, and visualization.
期刊最新文献
2024 Index IEEE Transactions on Haptics Vol. 17 Table of Contents A Novel Ungrounded Haptic Device for Generation and Orientation of Force and Torque Feedbacks. HM-Array: A Novel Haptic Magnetism-based Leader-follower Platform for Minimally Invasive Robotic Surgery. Perceptual Constancy in the Speed Dependence of Friction During Active Tactile Exploration
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