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Results: 130
Number of items: 130
  • van Eijden, T. M. G. J. (2001). Onderste extremiteit. In H. J. ten Donkelaar, & A. H. M. Lohman (Eds.), Klinische Anatomie en Embryologie (pp. 807-914). Elsevier Gezondheidszorg.
  • Beek, M., Aarnts, M. P., Koolstra, J. H., Feilzer, A. J., & van Eijden, T. M. G. J. (2001). Dynamic properties of the human temporomandibular joint disc. Journal of Dental Research, 80, 876-880. https://doi.org/10.1177/00220345010800030601
  • Beek, M., Koolstra, J. H., van Ruijven, L. J., & van Eijden, T. M. G. J. (2001). Three-dimensional finite element analysis of the cartilagineous structures in the human temporomandibular joint. Journal of Dental Research, 80, 1913-1918. https://doi.org/10.1177/00220345010800101001
  • Koolstra, J. H., Naeije, M., & van Eijden, T. M. G. J. (2001). The three-dimensional active envelope of jaw border movement and its determinants. Journal of Dental Research, 80, 1908-1912. https://doi.org/10.1177/00220345010800100901
  • Korfage, J. A. M., Schueler, Y. T., Brugman, P., & van Eijden, T. M. G. J. (2001). Human jaw-closing muscles differ in myosin heavy chain composition from supra- and infrahyoid muscles. Archives of Oral Biology, 46, 821-826. https://doi.org/10.1016/S0003-9969(01)00042-5
  • Langenbach, G. E. J., Weijs, W. A., Brugman, P., & van Eijden, T. M. G. J. (2001). A longitudinal electromyographic study of the postnatal maturation of mastication in the rabbit. Archives of Oral Biology, 46, 811-820. https://doi.org/10.1016/S0003-9969(01)00043-7
  • Turkawski, S. J. J., & van Eijden, T. M. G. J. (2001). Action potential shape of rabbit masseter motor units and jaw angle. Muscle & Nerve, 24, 5151-5153.
  • Turkawski, S. J. J., & van Eijden, T. M. G. J. (2001). Mechanical properties of single motor units in the rabbit masseter muscle as a function of jaw position. Experimental Brain Research, 138, 153-162. https://doi.org/10.1007/s002210100708
  • Giesen, E. B. W., Ding, M., Dalstra, M., & van Eijden, T. M. G. J. (2001). Mechanical properties of cancellous bone in the human mandibular condyle are anisotropic. Journal of Biomechanics, 34, 799-803. https://doi.org/10.1016/S0021-9290(01)00030-6
  • Open Access
    Beek, M. (2001). Biomechanical modeling of the human jaw joint. [Thesis, fully internal, Universiteit van Amsterdam].
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