Vergari Claudio, Courtois Isabelle, Ebermeyer Eric, Bouloussa Houssam, Vialle Raphaël, Skalli Wafa
Arts et Metiers ParisTech, LBM/Institut de Biomecanique Humaine Georges Charpak, 151 bd de l'Hopital, 75013, Paris, France.
Unite Rachis, CHU-Hopital Bellevue, 25 Boulevard Pasteur, 42100, Saint-Etienne, France.
Eur Spine J. 2016 Oct;25(10):3049-3055. doi: 10.1007/s00586-016-4511-7. Epub 2016 Mar 11.
Personalized modeling of brace action has potential in improving brace efficacy in adolescent idiopathic scoliosis (AIS). Model validation and simulation uncertainty are rarely addressed, limiting the clinical implementation of personalized models. We hypothesized that a thorough validation of a personalized finite element model (FEM) of brace action would highlight potential means of improving the model.
Forty-two AIS patients were included retrospectively and prospectively. Personalized FEMs of pelvis, spine and ribcage were built from stereoradiographies. Brace action was simulated through soft cylindrical pads acting on the ribcage and through displacements applied to key vertebrae. Simulation root mean squared errors (RMSEs) were calculated by comparison with the actual brace action (quantified through clinical indices, vertebral positions and orientations) observed in in-brace stereoradiographies.
Simulation RMSEs of Cobb angle and vertebral apical axial rotation was lower than measurement uncertainty in 79 % of the patients. Pooling all patients and clinical indices, 87 % of the indices had lower RMSEs than the measurement uncertainty.
In-depth analysis suggests that personalization of spinal functional units mechanical properties could improve the simulation's accuracy, but the model gave good results, thus justifying further research on its clinical application.
支具作用的个性化建模在提高青少年特发性脊柱侧凸(AIS)支具疗效方面具有潜力。模型验证和模拟不确定性很少被提及,这限制了个性化模型的临床应用。我们假设对支具作用的个性化有限元模型(FEM)进行全面验证将突出改进该模型的潜在方法。
回顾性和前瞻性纳入42例AIS患者。骨盆、脊柱和胸廓的个性化有限元模型由立体放射成像构建。通过作用于胸廓的软圆柱形垫以及应用于关键椎体的位移来模拟支具作用。通过与在支具内立体放射成像中观察到的实际支具作用(通过临床指标、椎体位置和方向量化)进行比较,计算模拟均方根误差(RMSE)。
在79%的患者中,Cobb角和椎体顶轴向旋转的模拟RMSE低于测量不确定性。汇总所有患者和临床指标,87%的指标RMSE低于测量不确定性。
深入分析表明,脊柱功能单元力学性能的个性化可提高模拟准确性,但该模型结果良好,因此有理由对其临床应用进行进一步研究。