Visual-to-Tactile Cross-Modal Generation Using a Class-Conditional GAN with Multi-Scale Discriminator and Hybrid Loss. [PDF]
Neshov N +4 more
europepmc +1 more source
When does movement help touch? Interstimulus separation and task difficulty in vibrotactile frequency discrimination. [PDF]
Ziat M +5 more
europepmc +1 more source
Haptic Feedback Systems for Lower-Limb Prosthetic Applications: A Review of System Design, User Experience, and Clinical Insights. [PDF]
Karimi M +8 more
europepmc +1 more source
Effect of EMG-activated vibrotactile biofeedback on skill learning in children with genetic and acquired dystonia during point-to-point and cyclic task practice. [PDF]
Kasiri M +8 more
europepmc +1 more source
Evaluating haptic experience using EEG and deep learning across multiple modalities: linking stimulus and self-reports. [PDF]
Alsuradi H, Atinafu Y, Eid M.
europepmc +1 more source
Efficacy and neural mechanisms of a vibrotactile-enhanced, brain-controlled soft robotic glove for upper limb rehabilitation after stroke: a multicentre randomised controlled trial protocol. [PDF]
Catherine Chan KL +9 more
europepmc +1 more source
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Vibrotactile feedback for collision awareness
Proceedings of the 2015 British HCI Conference, 2015Magnetic Confinement Fusion machines called tokamak (e.g. ITER and WEST projects), as well as many industrial projects, require a high integration level in a confined volume. The feasibility of installation and maintenance by an operator has to be considered in the early stages of the design.
Céphise Louison +3 more
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Vibrotactile Feedback for Industrial Telemanipulators
Dynamic Systems and Control, 1997Abstract Industrial applications of haptic feedback systems that add dexterity to telemanipulators have been limited due to their complexity, low reliability, and high cost. A promising and attractive alternative technology for industry is vibrotactile feedback.
Jack Tigh Dennerlein +2 more
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Vibrotactile Compliance Feedback for Tangential Force Interaction
IEEE Transactions on Haptics, 2017This paper presents a method to generate a haptic illusion of compliance using a vibrotactile actuator when a tangential force is applied to a rigid surface. The novel method builds on a conceptual compliance model where a physical object moves on a textured surface in response to a tangential force.
Seongkook, Heo, Geehyuk, Lee
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