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Authors: Martin Cervenka 1 and Josef Kohout 2

Affiliations: 1 University of West Bohemia, Faculty of Applied Sciences, Department of Computer Science and Engineering, Czech Republic ; 2 University of West Bohemia, Faculty of Applied Sciences, NTIS - New Technologies for the Information Society, Czech Republic

Keyword(s): Muscle Modelling, Muscle Deformation, Muscle Fibres, Position based Dynamics.

Abstract: This paper describes a real-time simulation of muscle movement that is based on inverse kinematics where bone placement is known apriori and muscle shape is calculated by a modified position-based dynamics (PBD) method. The method is comparable and competitive with the others, moreover, it is enhanced with some novel features like approach for respecting muscle anisotropy, really fast simplistic collision detection, etc. This real-time simulation presents visual plausibility of resulting muscle deformation in most cases.

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Paper citation in several formats:
Cervenka, M. and Kohout, J. (2020). Fast and Realistic Approach to Virtual Muscle Deformation. In Proceedings of the 13th International Joint Conference on Biomedical Engineering Systems and Technologies (BIOSTEC 2020) - HEALTHINF; ISBN 978-989-758-398-8; ISSN 2184-4305, SciTePress, pages 217-227. DOI: 10.5220/0009129302170227

@conference{healthinf20,
author={Martin Cervenka. and Josef Kohout.},
title={Fast and Realistic Approach to Virtual Muscle Deformation},
booktitle={Proceedings of the 13th International Joint Conference on Biomedical Engineering Systems and Technologies (BIOSTEC 2020) - HEALTHINF},
year={2020},
pages={217-227},
publisher={SciTePress},
organization={INSTICC},
doi={10.5220/0009129302170227},
isbn={978-989-758-398-8},
issn={2184-4305},
}

TY - CONF

JO - Proceedings of the 13th International Joint Conference on Biomedical Engineering Systems and Technologies (BIOSTEC 2020) - HEALTHINF
TI - Fast and Realistic Approach to Virtual Muscle Deformation
SN - 978-989-758-398-8
IS - 2184-4305
AU - Cervenka, M.
AU - Kohout, J.
PY - 2020
SP - 217
EP - 227
DO - 10.5220/0009129302170227
PB - SciTePress