Loads on the Hip Joint Endoprosthesis Due to Impacts
DOI:
https://doi.org/10.24425/mper.2024.149997Abstract
Engineering plays a significant role in the advancement of medicine. One example of this is endoprostheses, which are prostheses implanted inside the body. Hip joint endoprostheses are commonly implanted nowadays, greatly improving physical fitness and the associated quality of life. However, a potential risk in using such endoprostheses is the possibility of dislocation. In this presented work, systems of forces acting on the limb were subjected to analysis, identifying unstable states that increase the risk of dislocation. Most of the analyses are qualitative, presenting rather than solving the problem. Nevertheless, a quantitative approach was presented for the case of dynamic forces generated during kicking a soccer ball. For this purpose, computer simulation was employed, based on an appropriate mathematical model.References
AAOS, American Academy of Orthopaedic Surgeons (2023), www.aaos.org
Bober, T., & Zawadzki, J. (2006). Biomechanics of the Human Locomotor System. Wroclaw University of Physical Education. Wroclaw
Care Experts (2023). https://careexperts.pl/
Gierulski, W., Santarek, K., & Wiśniewska, J. (2020). Commercialization and Technology Transfer ; PWE Warsaw
Gierulski, W. (2016). Modeling in Production Engineering. Świętokrzyska University of Technology Kielce
Gierulski, W. (2020). Endoprosthesis with Locking Sleeve. Exclusive License No. W.130253 dated 2020-10-16 (utility model). Patent Office of the Republic of Poland
Gormack Orthopaedics (2023). https://www.gormack orthopaedics.co.nz/
Janasz, K., Kaczmarska, B., & Wasilczuk, J. (2016). Entrepreneurship and Innovation Financing. Polish Economic Publishing House
Kaczmarska, B., & Gierulski, W. (2021-1). Innovative Endoprosthesis Socket with Enhanced Stability – Commercialization Potential Analysis; Management Engineering. Production Digitization. Research News 3; Polish Economic Publishing House, Warsaw
Kaczmarska, B., & Gierulski, W. (2021-2). Modification of the Shape of the Endoprosthesis Socket to Improve Stability; Management Engineering. Production Digitization. Research News 3; Polish Economic Publishing House, Warsaw
Kaczmarska, B., Gierulski, W., Zajac, J., & Bittner, A. (2021). Technology Valuation Modeling in the Process of its Commercialization. Management and Production Engineering Review, 12(1), 85-93
Karuś, A, (2010). Analysis of the Causes of Hip Joint Endoprosthesis Dislocations. Jagiellonian University Medical College, Doctoral Dissertation, Kraków
Krupa, K. (2008). Modeling, Simulations, and Forecasting – Continuous Systems. Scientific and Technical Publishing, Warsaw
Mrozowski, J., & Awrejcewicz, J. (2004). Fundamentals of Biomechanics. Lodz University of Technology Publishing. Łódź
Niezgodziński, T. (2007). General Mechanics. PWN Scientific Publishing, Warsaw
Nowak, B. (2009). Dynamics Modelling of the BoneImplant System. Numerical and Experimental Studies. Doctoral Dissertation. Kazimierz Wielki University in Bydgoszcz, Faculty of Mathematics, Physics, and Environmental Mechanics. Bydgoszcz
Olszówka, M., & Niścior, M., (2015). Innovations in Physiotherapy, 2, Lublin
Serafin, W. (2003). Hip Joint Alloplasty – Selected Issues. Acta Scientifica Academiae Ostroviensis, 13
Terpilowska S., Głuszek S., Czerwosz E., Wronka H., Firek P., Szmidt J., Suchańska M., Kęczkowska J., Kaczmarska, B., Kozlowski M., & Diduszko R. (2021). Nano-Ag Particles Embedded in C-Matrix: Preparation, Properties, and Application in Cell Metabolism. Materials, 15.