Haptic Source-Effector: Full-Body Haptics via Non-Invasive Brain Stimulation
Yudai Tanaka, Jacob Serfaty, Pedro Lopes
Abstract
We propose a novel concept for haptics in which one centralized on-body actuator renders haptic effects on multiple body parts by stimulating the brain, i.e., the source of the nervous system—we call this a haptic source-effector, as opposed to the traditional wearables’ approach of attaching one actuator per body part (end-effectors). We implement our concept via transcranial-magnetic-stimulation (TMS)—a non-invasive technique from neuroscience/medicine in which electromagnetic pulses safely stimulate brain areas. Our approach renders ∼15 touch/force-feedback sensations throughout the body (e.g., hands, arms, legs, feet, and jaw—which we found in our first user study), all by stimulating the user's sensorimotor cortex with a single magnetic coil moved mechanically across the scalp. In our second user study, we probed into participants’ experiences while using our haptic display in VR. Finally, as the first implementation of full-body haptics based on non-invasive brain stimulation, we discuss the roadmap to extend its interactive opportunities.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 1f8b67a9-ff5a-48d5-9eeb-4d584879e601Cited by top-tier papers6
- Reel Feel: Rich Haptic XR Experiences Using an Active, Worn, Multi-String DeviceNathan Devrio, Chris HarrisonCHI 2025 · 10 citations
- Towards Unobtrusive Physical AI: Augmenting Everyday Objects with Intelligence and Robotic Movement for Proactive AssistanceViolet Yinuo Han, Jesse T. Gonzalez, Christina Yang, Zhiruo Wang et al.UIST 2025 · 3 citations
- Primed Action: Preserving Agency while Accelerating Reaction Time via Subthreshold Brain StimulationYudai Tanaka, Hunter G. Mathews, Pedro LopesUIST 2025 · 3 citations
- Forefeel the Move: Investigating Proprioceptive Feedback for Communicating Imminent Motions of Body-actuating SystemsMarie Muehlhaus, Martin Schmitz, Jürgen SteimleCHI 2026 · 1 citation
- HumanoidTurk: Expanding VR Haptics with Humanoids for Driving SimulationsDaeho Lee, Ryo Suzuki, Jin-Hyuk HongCHI 2026 · 1 citation
Builds on9
- bARefoot: Generating Virtual Materials using Motion Coupled Vibration in ShoesPaul Strohmeier, Seref Güngör, Luis Herres, Dennis Gudea et al.UIST 2020 · 69 citations
- Elevate: A Walkable Pin-Array for Large Shape-Changing TerrainsSeungwoo Je, Hyunseung Lim, Kongpyung Moon, Shan-Yuan Teng et al.CHI 2021 · 67 citations
- Touch&Fold: A Foldable Haptic Actuator for Rendering Touch in Mixed RealityShan-Yuan Teng, Pengyu Li, Romain Nith, Joshua Fonseca et al.CHI 2021 · 67 citations
- Full-hand Electro-Tactile Feedback without Obstructing Palmar Side of HandYudai Tanaka, Alan Shen, Andy Kong, Pedro LopesCHI 2023 · 65 citations
- Increasing Electrical Muscle Stimulation's Dexterity by means of Back of the Hand ActuationAkifumi Takahashi, Jas Brooks, Hiroyuki Kajimoto, Pedro LopesCHI 2021 · 60 citations
Related papers
- Interactive Benefits from Switching Electrical to Magnetic Muscle StimulationYudai Tanaka, Akifumi Takahashi, Pedro LopesUIST 2023 · 22 citations
- Retargeted Self-Haptics for Increased Immersion in VR without InstrumentationCathy Mengying Fang, Chris HarrisonUIST 2021 · 60 citations
- Thermal Masking Across the Human Body: Patterns, Pathways, and Perceptual BoundariesHaokun Wang, Daniel Honrales, Hyunjae Gil, Jin Ryong KimCHI 2026 · 1 citation
- "Feeling" the Stretch: Enhancing Embodiment in Virtual Arm Elongation Through Spatiotemporal Modulation of Visio-Haptic FeedbackSara Rossi, Claudio Pacchierotti, Maud MarchalIEEE VR 2026
- Real-time Semantic Full-Body Haptic Feedback Converted from Sound for Virtual Reality GameplayGyeore Yun, Seungmoon ChoiCHI 2025 · 11 citations
