Femur, tibia and fibula bone templates to estimate subject-specific knee ligament attachment site locations.

J Biomech

Arts et Metiers ParisTech, Laboratoire de Biomécanique (LBM)/Institut de Biomécanique Humaine Georges Charpak, Paris, France.

Published: October 2016

AI Article Synopsis

  • - This study focuses on creating digital models of the femur, tibia, and fibula that include precise positions of knee ligament attachment sites, which are important for individualized knee modeling.
  • - Researchers examined knee specimens and identified ligament attachment areas through dissection, using medical imaging to create digital represented models that reflect these positions and their variability among individuals.
  • - The models showed that the average accuracy for estimating ligament attachment site positions was about 3.3mm for femoral sites and 5.8mm for tibial/fibular sites, indicating a low level of variation among the samples studied.

Article Abstract

In-vivo estimates of the positions of knee ligament attachment sites are crucial for subject-specific knee modelling. The present study provides template digital models of femur, tibia and fibula that embed the positions of centroids of the origins and insertions of cruciate and collateral ligaments, along with information on their dispersion related to inter-individual variability. By using a shape transformation procedure of choice, these templates can be made to match anatomical information measured on a subject under analysis. Generic bone digital models of the femur, tibia and fibula were first chosen as bone templates. Ligament attachment areas were accurately identified through dissection on the bones of 11 knee specimens, and marked using radio opaque paint. Digital models of these bones embedding the positions of the centroids of the identified ligament attachment areas were thereafter obtained using medical imaging techniques. These centroids were mapped onto the relevant bone template, thus obtaining a cloud of 11 points for each attachment site, and descriptive statistics of the position of these points were thereafter determined. Dispersion of these positions, essentially due to inter-individual variability, was below 6mm for all attachment areas. The accuracy with which subject-specific ligament attachment site positions may be estimated using the bone template models provided in this paper was also assessed using the above-mentioned 11 specimens data set, and a leave-one-out cross validation approach. Average accuracy was found to be 3.3±1.5mm and 5.8±2.9mm for femoral and tibial/fibular attachment sites, respectively.

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http://dx.doi.org/10.1016/j.jbiomech.2016.09.027DOI Listing

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