Journal article
Authors list: Foelsch, Christian; Ulloa, Carlos Alfonso Fonseca; Harz, Torben; Schirmer, Julia; Glameanu, Cosmin; Scherberich, Jan; Krombach, Gabriele; Rickert, Markus; Martin, John Ryan; Kuehn, Klaus-Dieter; Jahnke, Alexander
Publication year: 2023
Journal: Medical Engineering & Physics
Volume number: 119
ISSN: 1350-4533
eISSN: 1873-4030
DOI Link: https://doi.org/10.1016/j.medengphy.2023.104027
Publisher: Elsevier
Abstract:
Early aseptic loosening following primary total knee arthroplasty related to several factors might appear at the interface implant-cement or cement-bone. A standardized in vitro model might provide information on the relevance of single variable parameter of cementation including technique and cement respectively bone structure on fixation strength. Micromotion measurement using different directions of load should detect the primary stability of the interfaces.An open-cell rigid foam model was used for cementation of PFC-Sigma tibial trays with Palacos & REG;. Pins were applied to the model for continuous non-destructive measurement. Relative micromotions for rotation, valgus-varus and extension flexion stress were detected at the interfaces as well as cement penetration was measured.The reproducibility of the measurement could be shown for all interfaces in extension-flexion movements. For rotation a negative trend was shown for the interface cement-prosthesis and cement-bone concerning varus-valgus stress reflecting varying surgical cementation technique. More micromotion related to extension-flexion force might reflect the design of the implant.Measurement of relative micromotion and cement distribution appear accurate to detect small differences of movement at different interfaces of cemented tibial implants and the results are reproducible for most parameter. An increased number of specimens should achieve statistical relevance for all measurements.
Citation Styles
Harvard Citation style: Foelsch, C., Ulloa, C., Harz, T., Schirmer, J., Glameanu, C., Scherberich, J., et al. (2023) Micromotion measurement at the interfaces of cemented tibial endoprosthetic replacements: A new standardized in vitro model using open-cell rigid foam, Medical Engineering & Physics, 119, Article 104027. https://doi.org/10.1016/j.medengphy.2023.104027
APA Citation style: Foelsch, C., Ulloa, C., Harz, T., Schirmer, J., Glameanu, C., Scherberich, J., Krombach, G., Rickert, M., Martin, J., Kuehn, K., & Jahnke, A. (2023). Micromotion measurement at the interfaces of cemented tibial endoprosthetic replacements: A new standardized in vitro model using open-cell rigid foam. Medical Engineering & Physics. 119, Article 104027. https://doi.org/10.1016/j.medengphy.2023.104027