lightbulbPractical problemElectrical Muscle Stimulation and EMS Force Feedback Simulation
VR users perceive inauthentic and disharmonious haptic experiences in high-intensity force feedback scenarios.XR/AR/VR Interaction / Electrical Muscle Stimulation and EMS Force Feedback Simulation
VR users perceive inauthentic and disharmonious haptic experiences in high-intensity force feedback scenarios.
Similar questions
lightbulbPractical problemElectrical Muscle Stimulation and EMS Force Feedback Simulation
Users in teleoperation cannot obtain natural, accurate haptic feedback, increasing learning difficulty and operational error.lightbulbPractical problemElectrical Muscle Stimulation and EMS Force Feedback Simulation
Traditional teleoperation haptic feedback devices are complex and bulky, making realistic force feedback difficult.UbiComp '24Proposal of a Framework for Enhancing Teleoperation Experience with Biomechanical Simulation-Based Electrical Muscle Stimulation in Virtual Reality
lightbulbPractical problemElectrical Muscle Stimulation and EMS Force Feedback Simulation
Seated VR struggles to realistically simulate walking sensation, reducing immersion.UbiComp '24LegSense: Inducing Walking Sensation in Seated VR by Providing Movement Illusion via Electrical Muscle Stimulation
lightbulbPractical problemElectrical Muscle Stimulation and EMS Force Feedback Simulation
Existing haptic devices rely on multi-point design and struggle to achieve highly flexible whole-body feedback.lightbulbPractical problemElectrical Muscle Stimulation and EMS Force Feedback Simulation
VR haptic devices' insufficient battery life limits immersive experience.lightbulbPractical problemElectrical Muscle Stimulation and EMS Force Feedback Simulation
Head control devices in AR/VR are bulky and unnatural, limiting immersion.Related papers
CHI 2025
TelePulse: Enhancing the Teleoperation Experience through Biomechanical Simulation-Based Electrical Muscle Stimulation in Virtual Reality
Seokhyun Hwang, Seongjun Kang, Jeongseok Oh
CHI 2024
Paired-EMS: Enhancing Electrical Muscle Stimulation (EMS)-based Force Feedback Experience by Stimulating Both Muscles in Antagonistic Pairs
Chia-Yu Cheng, Yu Chen, Sitaresmi Wahyu Handani
CHI 2024
Haptic Source-effector: Full-body Haptics via Non-invasive Brain Stimulation
Yudai Tanaka, Jacob Serfaty, Pedro Lopes
UIST 2022
Prolonging VR Haptic Experiences by Harvesting Kinetic Energy from the User
Shan-Yuan Teng, K. D. Wu, Jacqueline Chen
CHI 2022
Electrical Head Actuation: Enabling Interactive Systems to Directly Manipulate Head Orientation
Yudai Tanaka, Jun Nishida, Pedro Lopes
CHI 2021
Increasing Electrical Muscle Stimulation’s Dexterity by means of Back of the Hand Actuation
Akifumi Takahashi, Jas Brooks, Hiroyuki Kajimoto