A Comprehensive Mechanotransduction Model for Tactile Feedback based on Multi-Axial Stresses at the Fingertip-Contact Interface
A Comprehensive Mechanotransduction Model for Tactile Feedback based on Multi-Axial Stresses at the Fingertip-Contact Interface
Dataset supporting:
Valero, M. et al (2017). A comprehensive mechanotransduction model for tactile feedback based on multi-axial stresses at the fingertip-contact interface. Paper presented at IEEE World Haptics 2017, Fürstenfeldbruck, Germany.
University of Southampton
Valero, Maria
636d4ede-ef9d-4aa0-974e-551c9878106e
Hale, Nicholas
3efb2814-5536-480d-897e-f15985accdee
Tang, Jinghua
4679983a-5b8f-4d37-a1b6-fdb50effc5f1
Jiang, Liudi
374f2414-51f0-418f-a316-e7db0d6dc4d1
Valero, Maria
636d4ede-ef9d-4aa0-974e-551c9878106e
Hale, Nicholas
3efb2814-5536-480d-897e-f15985accdee
Tang, Jinghua
4679983a-5b8f-4d37-a1b6-fdb50effc5f1
Jiang, Liudi
374f2414-51f0-418f-a316-e7db0d6dc4d1
Tang, Jinghua
(2017)
A Comprehensive Mechanotransduction Model for Tactile Feedback based on Multi-Axial Stresses at the Fingertip-Contact Interface.
University of Southampton
doi:10.5258/SOTON/D0029
[Dataset]
Abstract
Dataset supporting:
Valero, M. et al (2017). A comprehensive mechanotransduction model for tactile feedback based on multi-axial stresses at the fingertip-contact interface. Paper presented at IEEE World Haptics 2017, Fürstenfeldbruck, Germany.
Archive
Dataset.zip
- Dataset
More information
Published date: 2017
Organisations:
Engineering Mats & Surface Engineerg Gp, Education Hub
Identifiers
Local EPrints ID: 419639
URI: http://eprints.soton.ac.uk/id/eprint/419639
PURE UUID: fb8f5bd4-a9a5-4896-ae4e-394bc5931c66
Catalogue record
Date deposited: 17 Apr 2018 16:31
Last modified: 04 Nov 2023 02:41
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Contributors
Data Collector:
Maria Valero
Data Collector:
Nicholas Hale
Creator:
Jinghua Tang
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