THREE-DIMENSIONAL COMPUTER MODELLING AND STRESS-STRAIN ANALYSIS OF TEMPOROMANDIBULAR JOINT

Roman Palyvoda, Vladyslav Malanchuk, Mykola Kryschuk, Oksana Volovar

Abstract


The main purpose of the study is to build 3D model of temporomandibular joint and mandible using programs for modelling and design, research stress and strain in cartilage and bone of model depending on different contraction of chewing muscles (especially lateral pterygoid muscle). There were used such methods as computer tomography data, finite element method and analysis topography of lateral pterygoid muscle on cadavers. In results of study was obtained maximal stress in anterior and distal parts of articular disc between 1,4–3 MPa and 0,4–1 MPa. Thus, static loads of articular disc were different, depends on force of contraction lateral pterygoid muscle. Muscle disturbances (hyperfunctioning, atrophy etc.) should be considered in treatment of temporomandibular dysfunction and examined on magnetic resonance investigation if it is present in the same patient.


Keywords


temporomandibular joint; lateral pterygoid muscle; finite element analysis; 3D model

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References


Kryshchuk, N. G., Malanchuk, V. A., Kopchak, A. V., Eshchenko, V. O. (2012). Finite-element study of the bone anisotropy and inhomogenity influence on stress distribution in mandible. Naukovi visti NTUU–KPI, 6, 71–76.

Korioth, T. W. P., Versluis, A. (1997). Modeling the Mechanical Behavior of the Jaws and Their Related Structures By Finite Element (Fe) Analysis. Critical Reviews in Oral Biology & Medicine, 8 (1), 90–104. doi: 10.1177/10454411970080010501

Kalinovsky, D. K., Chuyko, A. N. (2011). Possibilities of the use modern computer technologies CT/CAD/CAM in maxillofacial surgery. Ukr. J. Telemed. Med. Telemat., 9 (1), 35–42.

Leon, L. M. M., Liebgott, B., Agur, A. M., Norwich, K. H. (2006). Computational model of the movement of the human muscles of mastication during opening and closing of the jaw. Computer Methods in Biomechanics and Biomedical Engineering, 9 (6), 387–398. doi: 10.1080/10255840601022734

Citarella, R. (2012). FEM and BEM Analysis of a Human Mandible with Added Temporomandibular Joints. The Open Mechanical Engineering Journal, 6 (1), 100–114. doi: 10.2174/1874155x01206010100

Beek, M., Koolstra, J. Н., van Ruijven, L., van Eijden, T. M. G. (2000). Three-dimensional finite element analysis of the human temporomandibular joint disc. Journal of Biomechanics, 33 (3), 307–316. doi: 10.1016/s0021-9290(99)00168-2

Mohammed, S. D., Desai, H. (2014). Basic Concepts of Finite Element Analysis and its Applications in Dentistry: An Overview. Journal of Oral Hygiene & Health, 02 (05). doi: 10.4172/2332-0702.1000156

Damaris, Ch. (2009). Moving temporomandibular joint research into 21th century. Journal TMJ science, 1, 9–18.

Tanaka, E., Rodrigo, D. P., Tanaka, M., Kawaguchi, A., Shibazaki, T., Tanne, K. (2001). Stress analysis in the TMJ during jaw opening by use of a three-dimensional finite element model based on magnetic resonance images. International Journal of Oral and Maxillofacial Surgery, 30 (5), 421–430. doi: 10.1054/ijom.2001.0132

Tapia Contreras, J., Cantín, M., Zavando, D., Suazo Galdames, I. (2011). Percentage of Lateral Pterygoid Muscle Inserted in the Disc of Human Temporomandibular Joint. International Journal of Morphology, 29 (3), 965–970. doi: 10.4067/s0717-95022011000300051

Lamela, M. J., Fernandez, P., Dorantes, D., Ramos, A., Tanaka, E., Arguelles, A., Fernandez-Canteli, A. (2012). Experimantal biomechanical characterization and numerical analysis of the temporomandibular joint. Porto, 1–8.

Chen, J., Akyuz, U., Xu, L., Pidaparti, R. M. V. (1998). Stress analysis of the human temporomandibular joint. Medical Engineering & Physics, 20 (8), 565–572. doi: 10.1016/s1350-4533(98)00070-8

Naeije, M., Hofman, N. (2003). Biomechanics of the Human Temporomandibular Joint during Chewing. Journal of Dental Research, 82 (7), 528–531. doi: 10.1177/154405910308200708

Ciortan, M. (2002). The biomechanical modeling of temporomandibular joint. Ann. of the Oradea Univ., VII, 773–776.

Han, J. J., Hwang, S. J. (2015). Three-dimensional analysis of postoperative returning movement of perioperative condylar displacement after bilateral sagittal split ramus osteotomy for mandibular setback with different fixation methods. Journal of Cranio-Maxillofacial Surgery, 43 (9), 1918–1925. doi: 10.1016/j.jcms.2015.08.004

Tanaka, E., van Eijden, T. (2003). Biomechanical behavior of the temporomandibular joint disc. Critical Reviews in Oral Biology & Medicine, 14 (2), 138–150. doi: 10.1177/154411130301400207

Shahar, R., Zaslansky, P., Barak, M., Friesem, A. A., Currey, J. D., Weiner, S. (2007). Anisotropic Poisson’s ratio and compression modulus of cortical bone determined by speckle interferometry. Journal of Biomechanics, 40 (2), 252–264. doi: 10.1016/j.jbiomech.2006.01.021

Hliňáková, P., Dostálová, T., Daněk, J., Nedoma, J., Hlaváček, I. (2010). Temporomandibular joint and its two-dimensional and three-dimensional modelling. Mathematics and Computers in Simulation, 80 (6), 1256–1268. doi: 10.1016/j.matcom.2009.08.007

Ingawalé, S., Goswami, T. (2009). Temporomandibular Joint: Disorders, Treatments, and Biomechanics. Annals of Biomedical Engineering, 37 (5), 976–996. doi: 10.1007/s10439-009-9659-4

Hohl, T. H., Tucek, W. H. (1982). Measurement of condylar loading forces by instrumented prosthesis in the baboon. Journal of Maxillofacial Surgery, 10, 1–7. doi: 10.1016/s0301-0503(82)80003-9

Brehnan, K., Boyd, R. L., Laskin, J., Gibbs, C. H., Mahan, P. (1981). Direct Measurement of Loads at the Temporomandibular Joint in Macaca arctoides. Journal of Dental Research, 60 (10), 1820–1824. doi: 10.1177/00220345810600101501

Chen, J., Akyuz, U., Xu, L., Pidaparti, R. M. V. (1998). Stress analysis of the human temporomandibular joint. Medical Engineering & Physics, 20 (8), 565–572. doi: 10.1016/s1350-4533(98)00070-8

El. Haddioui, A., Laison, F., Zouaoui, A., Bravetti, P., Gaudy, J. F. (2005). Functional anatomy of the human lateral pterygoid muscle. Surgical and Radiologic Anatomy, 27 (4), 271–286. doi: 10.1007/s00276-005-0324-9

Tapia Contreras, J., Cantín, M., Zavando, D., Suazo Galdames, I. (2011). Percentage of Lateral Pterygoid Muscle Inserted in the Disc of Human Temporomandibular Joint. International Journal of Morphology, 29 (3), 965–970. doi: 10.4067/s0717-95022011000300051

Takamura, H., Maruyama, T. (1984). Studies on the structural changes of the temporomandibular joint-macroscopic observations. Nihon Hotetsu Shika Gakkai Zasshi, 28 (1), 49–59. doi: 10.2186/jjps.28.49




DOI: http://dx.doi.org/10.21303/2504-5679.2016.00088

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