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Published in: Journal of Medical Systems 5/2019

01-05-2019 | CAD and CAM | Education & Training

Behavior under Load of A Human Shoulder: Finite Element Simulation and Analysis

Authors: Manuel Islán Marcos, Emilio Lechosa Urquijo, Fernando Blaya Haro, Roberto D’Amato, Enrique Soriano Heras, Juan Antonio Juanes

Published in: Journal of Medical Systems | Issue 5/2019

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Abstract

Most musculoskeletal injuries occur during the work routines in different areas, due to repetitive and sustained movements, they are often located in the shoulder. For workers in the building sector, the repetitive movements and displacements occur under load and unnatural postures of the shoulder joint. For this reason, this study aims to model in 3D the biological components which form the shoulder joint for the later finite element analysis. Three cases with different loads have been considered for this study. Due to a linear and isotropic joint approach it has been possible to evaluate the tensions in the main components of the shoulders: muscles, tendons and ligaments. The methodology used allowed obtaining an improved mesh of the shoulder joint to analyse real situations with finite element method analysis with applications in the field of sports medicine, work, etc. Furthermore, the simplification adopted for modelling the joint muscles, as 1D elements in the finite element model has made it possible to establish different positions of human joint without mesh again each of the studied positions. The results are consistent with the states of applied loads. In fact, the maximum stresses in bones are in the insertion areas of the ligaments. Due to the static positions of the joint under study, the muscles do not support high stresses. According to the stresses distribution, the maximum values are in the zones of tendons. From the result analysis, it is observed how the stresses distribution in the cartilage area maintains coherence with reality since the maximum stresses appear in the lower half of the cartilage. In this area in which the Humerus-scapula contact is greater, the compression tensions are greater.
Literature
1.
go back to reference Brunelli, M. P., and Gill, T. J., Fractures and tendon injuries of the athletic shoulder. Orthop. Clin. North Am. 33(3):497–508, 2002.CrossRef Brunelli, M. P., and Gill, T. J., Fractures and tendon injuries of the athletic shoulder. Orthop. Clin. North Am. 33(3):497–508, 2002.CrossRef
2.
go back to reference Islan, M., Carvajal, J., Pedro, P. S., D’Amato, R., Juanes, J. A., and Soriano, E., Linear approximation of the behavior of the rotator cuff under fatigue conditions. Violinist case study, in Proceedings of the 5th International Conference on Technological Ecosystems for Enhancing Multiculturality - TEEM 2017, pp. 1–8, 2017. Islan, M., Carvajal, J., Pedro, P. S., D’Amato, R., Juanes, J. A., and Soriano, E., Linear approximation of the behavior of the rotator cuff under fatigue conditions. Violinist case study, in Proceedings of the 5th International Conference on Technological Ecosystems for Enhancing Multiculturality - TEEM 2017, pp. 1–8, 2017.
3.
go back to reference M. Islan, F. Blaya, P. San Pedro, R. D’Amato, E. Lechosa Urquijo, and J. A. Juanes, “Analysis and fem simulation methodology of dynamic behavior of human rotator cuff in repetitive routines: Musician case study,” J. Med. Syst., vol. 42, no. 3, 55, 2018. M. Islan, F. Blaya, P. San Pedro, R. D’Amato, E. Lechosa Urquijo, and J. A. Juanes, “Analysis and fem simulation methodology of dynamic behavior of human rotator cuff in repetitive routines: Musician case study,” J. Med. Syst., vol. 42, no. 3, 55, 2018.
4.
go back to reference CDC - NIOSH Publications and Products, Cumulative trauma disorders in the workplace (95-119), DHHS Publ. Number 95–119, 1995. CDC - NIOSH Publications and Products, Cumulative trauma disorders in the workplace (95-119), DHHS Publ. Number 95119, 1995.
5.
go back to reference International Labour Office - Geneva, LIST OF OCCUPATIONAL DISEASES (revised 2010) Identification and recognition of occupational diseases: Criteria for incorporating diseases in the ILO list of occupational diseases. Geneva: INTERNATIONAL LABOUR OFFICE • GENEVA, 2010. International Labour Office - Geneva, LIST OF OCCUPATIONAL DISEASES (revised 2010) Identification and recognition of occupational diseases: Criteria for incorporating diseases in the ILO list of occupational diseases. Geneva: INTERNATIONAL LABOUR OFFICE • GENEVA, 2010.
6.
go back to reference Ruggiero, A., Affatato, S., Merola, M., and De, M. C., FEM analysis of metal on UHMWPE total hip prosthesis during normal walking cycle, in Proceedings of the XXIII Conference of the Italian Association of Theoretical and Applied Mechanics (AIMETA 2017), pp. 4–7, 2017. Ruggiero, A., Affatato, S., Merola, M., and De, M. C., FEM analysis of metal on UHMWPE total hip prosthesis during normal walking cycle, in Proceedings of the XXIII Conference of the Italian Association of Theoretical and Applied Mechanics (AIMETA 2017), pp. 4–7, 2017.
7.
go back to reference Ruggiero, A., Gòmez, E., and D’Amato, R., Approximate analytical model for the squeeze-film lubrication of the human ankle joint with synovial fluid filtrated by articular cartilage. Tribol. Lett. 41(2):337–343, 2011.CrossRef Ruggiero, A., Gòmez, E., and D’Amato, R., Approximate analytical model for the squeeze-film lubrication of the human ankle joint with synovial fluid filtrated by articular cartilage. Tribol. Lett. 41(2):337–343, 2011.CrossRef
8.
go back to reference Ruggiero, A., Gómez, E., and D’Amato, R., Approximate closed-form solution of the synovial fluid film force in the human ankle joint with non-Newtonian lubricant. Tribology International 57:156–161, 2013.CrossRef Ruggiero, A., Gómez, E., and D’Amato, R., Approximate closed-form solution of the synovial fluid film force in the human ankle joint with non-Newtonian lubricant. Tribology International 57:156–161, 2013.CrossRef
9.
go back to reference D’Amato, R., Calvo, R., and Gómez, E., Sensitivity study of the morphometric fitting on the pressure field inside ankle joints. Case Stud. Mech. Syst. Signal Process. 1:8–14, 2015. D’Amato, R., Calvo, R., and Gómez, E., Sensitivity study of the morphometric fitting on the pressure field inside ankle joints. Case Stud. Mech. Syst. Signal Process. 1:8–14, 2015.
10.
go back to reference Luo, Z. P., Hsu, H. C., Grabowski, J. J., Morrey, B. F., and An, K. N., Mechanical environment associated with rotator cuff tears. J. shoulder Elb. Surg. 7(6):616–620, 1998.CrossRef Luo, Z. P., Hsu, H. C., Grabowski, J. J., Morrey, B. F., and An, K. N., Mechanical environment associated with rotator cuff tears. J. shoulder Elb. Surg. 7(6):616–620, 1998.CrossRef
11.
go back to reference Seki, N. et al., Mechanical environment of the supraspinatus tendon: Three-dimensional finite element model analysis. J. Orthop. Sci. 13(4):348–353, 2008.CrossRef Seki, N. et al., Mechanical environment of the supraspinatus tendon: Three-dimensional finite element model analysis. J. Orthop. Sci. 13(4):348–353, 2008.CrossRef
12.
go back to reference Zheng, M., Zou, Z., Bartolo, P. J. D. S., Peach, C., and Ren, L., Finite element models of the human shoulder complex: a review of their clinical implications and modelling techniques, International Journal for Numerical Methods in Biomedical Engineering, vol. 33, no. 2. Wiley-Blackwell, 2017. Zheng, M., Zou, Z., Bartolo, P. J. D. S., Peach, C., and Ren, L., Finite element models of the human shoulder complex: a review of their clinical implications and modelling techniques, International Journal for Numerical Methods in Biomedical Engineering, vol. 33, no. 2. Wiley-Blackwell, 2017.
Metadata
Title
Behavior under Load of A Human Shoulder: Finite Element Simulation and Analysis
Authors
Manuel Islán Marcos
Emilio Lechosa Urquijo
Fernando Blaya Haro
Roberto D’Amato
Enrique Soriano Heras
Juan Antonio Juanes
Publication date
01-05-2019
Publisher
Springer US
Published in
Journal of Medical Systems / Issue 5/2019
Print ISSN: 0148-5598
Electronic ISSN: 1573-689X
DOI
https://doi.org/10.1007/s10916-019-1248-y

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