Schlager Benedikt, Niemeyer Frank, Liebsch Christian, Galbusera Fabio, Boettinger Julius, Vogele Daniel, Wilke Hans-Joachim
a Institute of Orthopaedic Research and Biomechanics, Centre for Trauma Research Ulm , Ulm University Medical Centre , Ulm , Germany.
b IRCCS Istituto Ortopedico Galeazzi, Milan, Italy.
Comput Methods Biomech Biomed Engin. 2018 Nov;21(14):731-739. doi: 10.1080/10255842.2018.1516762. Epub 2018 Nov 17.
The motion of the costovertebral joint (CVJ) is governed by the material properties and its morphology. The goal of this numerical study was to identify the material and morphology parameters with the greatest influence on the motion of the CVJ. A fully parametric finite element model of the anatomy and material properties of the CVJ was developed. The impact of five morphology and thirteen material parameters was investigated and compared to in vitro data. The motion was influenced in particular by the rotational stiffness of the articulatio capitis costae and the lateral position of the fovea costalis transveralis.
肋椎关节(CVJ)的运动受其材料特性及其形态的支配。本数值研究的目的是确定对肋椎关节运动影响最大的材料和形态参数。建立了一个关于肋椎关节解剖结构和材料特性的全参数有限元模型。研究了五个形态参数和十三个材料参数的影响,并与体外数据进行了比较。运动尤其受到肋头关节的旋转刚度和横突肋凹的侧向位置的影响。