Faster Indentation Influences Skin Deformation To Reduce Tactile Discriminability of Compliant Objects
Author:
Affiliation:
1. School of Engineering and Applied Science, University of Virginia, Charlottesville, VA, USA
Funder
National Science Foundation
National Institutes of Health
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Subject
Computer Science Applications,Human-Computer Interaction
Link
https://ieeexplore.ieee.org/ielam/4543165/10158437/10061270-aam.pdf
Reference45 articles.
1. Slowly Adapting Mechanoreceptors in the Borders of the Human Fingernail Encode Fingertip Forces
2. A Standard Methodology to Characterize the Intrinsic Material Properties of Compliant Test Stimuli
3. Quantitative analysis of static strain sensitivity in human mechanoreceptors from hairy skin
4. Characterization of nonlinear finger pad mechanics for tactile rendering
5. Role of indentation depth and contact area on human perception of softness for haptic interfaces
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1. A transparent hydraulic actuator to visualize finger pad deformation at programmable material compliances;2024 IEEE Haptics Symposium (HAPTICS);2024-04-07
2. An individual's skin stiffness predicts their tactile discrimination of compliance;The Journal of Physiology;2023-11-09
3. Perceptibility of programmable softness displays using magnetorheological elastomers;Proceedings of the Human Factors and Ergonomics Society Annual Meeting;2023-09
4. An individual’s skin stiffness predicts their tactile acuity;2023-07-18
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