FeetThrough: Electrotactile Foot Interface that Preserves Real-World Sensations
Keigo Ushiyama, Pedro Lopes
摘要
Haptic interfaces have been extended to the feet to enhance foot-based activities, such as guidance while walking or stepping on virtual textures. Most feet haptics use mechanical actuators, namely vibration motors. However, we argue that vibration motors are not the ideal actuators for all feet haptics. Instead, we demonstrate that electrotactile stimulation provides qualities that make it a powerful feet-haptic interface: (1) Users wearing electrotactile can not only feel the stimulation but can also better feel the terrain under their feet—this is critical as our feet are also responsible for the balance on uneven terrains and stairs—electrotactile achieves this improved “feel-through” effect because it is thinner than vibrotactile actuators, at 0.1 mm in our prototype; (2) While a single vibrotactile actuator will also vibrate surrounding skin areas, we found improved two-point discrimination thresholds for electrotactile; (3) Electrotactile can be applied directly to soles, insoles or socks, enabling new applications such as barefoot interactive experiences or without requiring users to have custom-shoes with built-in vibration motors. Finally, we demonstrate applications in which electrotactile feet interfaces allow users to feel not only virtual information but also the real terrain under their shoes, such as a VR experience where users walk on ground props and a tactile navigation system that augments the ground with virtual tactile paving to assist pedestrians in low-vision situations.
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引用它的顶会 Paper6
- Haptic Permeability: Adding Holes to Tactile Devices Improves DexterityShan-Yuan Teng, Aryan Gupta, Pedro LopesCHI 2024 · 被引用 18 次
- Seeing with the Hands: A Sensory Substitution That Supports Manual InteractionsShan-Yuan Teng, Gene S.-H. Kim, Xuanyou Liu, Pedro LopesCHI 2025 · 被引用 13 次
- Stick&Slip: Altering Fingerpad Friction via Liquid CoatingsAlex Mazursky, Jacob Serfaty, Pedro LopesCHI 2024 · 被引用 6 次
- eTactileKit: A Toolkit for Design Exploration and Rapid Prototyping of Electro-Tactile InterfacesPraneeth Bimsara Perera, Ravindu Madhushan Pushpakumara, Hiroyuki Kajimoto, Arata Jingu 等UIST 2025 · 被引用 6 次
- Next Generation Wearable Haptics Should Balance Virtual & Real-world FidelityShan-Yuan Teng, Yudai Tanaka, Alex Mazursky, Pedro LopesCHI 2026 · 被引用 2 次
它引用的顶会 Paper3
- bARefoot: Generating Virtual Materials using Motion Coupled Vibration in ShoesPaul Strohmeier, Seref Güngör, Luis Herres, Dennis Gudea 等UIST 2020 · 被引用 69 次
- LipIO: Enabling Lips as both Input and Output SurfaceArata Jingu, Yudai Tanaka, Pedro LopesCHI 2023 · 被引用 26 次
- FrictShoes: Providing Multilevel Nonuniform Friction Feedback on Shoes in VRChih-An Tsao, Tzu-Chun Wu, Hsin-Ruey Tsai, Tzu-Yun Wei 等IEEE VR 2022 · 被引用 15 次
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