Intervertebral force computation: a non invasive computation method

Abedrabbo Ode, Gabriel;Mahaudens, Philippe;Detrembleur, Christine;Mousny, Maryline;Fisette, Paul
(2019) Computer Methods in Biomechanics and Biomedical Engineering — Vol. 22, n° Suppl 1, p. S230-S232 (2019)

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Abstract
(en) INTRODUCTION : Spine surgery planning involves many decisions for which the surgeon has not enough information, and for which a dynamic model can be helpful. Research studies show a high variability in decision making in the planning of scoliosis surgery by experienced surgeons (Robitaille et al. 2007). That variability is problematic because this lack of information may cause complications for the patient, such as revision surgery or an increased limitation in spine mobility. Therefore, a biomechanical model for spine surgery planning can be useful in providing the surgeon with the information needed to propose the best treatment. In this context, intervertebral efforts represent an essential input in assisting diagnosis and subsequently guiding the surgical planning of scoliosis. [...]
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Abedrabbo Ode, G., Mahaudens, P., Detrembleur, C., Mousny, M., & Fisette, P. (2019). Intervertebral force computation: a non invasive computation method. Computer Methods in Biomechanics and Biomedical Engineering, 22(Suppl 1), S230-S232. https://doi.org/10.1080/10255842.2020.1714251 (Original work published 2019)