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作 者:尹一恒[1] 王鹏[1] 余新光[1] 孟春玲[2]
机构地区:[1]解放军总医院神经外科,北京100853 [2]北京工商大学机械工程学院,北京100048
出 处:《中华神经外科疾病研究杂志》2012年第3期245-248,共4页Chinese Journal of Neurosurgical Disease Research
基 金:国家自然科学基金资助项目(30973032)
摘 要:目的建立一个新型枕寰枢复合体有限元模型并对其进行生物力学分析。方法采集CT断层资料,应用Mimics软件完成枕寰枢的三维重建并获取点云数据,辅助以逆向工程完成骨性结构的曲面重构;采用Ture Grid软件建立包括关节软骨在内的全六面体有限元网格模型,建立模拟韧带的弹簧单元;在0.3 Nm和1.5 Nm外载荷下进行了前屈、后伸、侧屈和轴向旋转四种生理运动的生物力学分析及有效性验证。结果该枕寰枢模型能对正常情况下生物力学特性如运动学、韧带应变、关节应力等进行预测。结论枕寰枢有限元模型对枕颈交界区生物力学的改变及其稳定性的影响可以进行有效的、可重复的仿真分析,具有较高的实用性和临床参考价值。Objective To establish a newly developed occipito atlantoaxial finite element model (FEM) and perform a biomechanical analysis of the occipitalvertebral junction. Methods CT data of occipito atlantoaxial complex were obtained. Mimics software was used to establish the threedimensional reconstruction of occipitoatlantoaxial complex and obtain the cloudy point data. Then reverse engineering approach was used to establish the surface reconstruction of bone structure and the geometric model. The wholehexahedral mesh FEM including articular cartilages was established using the True Grid software. The ligaments were modeled with nonlinear spring elements. The biomechanical analysis and validation was performed under physiologic loadings of 0.3 Nm and 1.5 Nm to simulate four motions of axial rotation, flexion, extension, and lateral bending, respectively. Results The occipitoatlantoaxial FEM could be an effective method in predicting the kinematics, ligament strain and stress force of the joints in the occipitovertebral junction. Conclusion The occipitoatlantoaxial FEM is an effective and repeatable method to study the changes of biomechanics and the influence of the stability of the occipitalvertebral junction and is of higher practicability and clinical reference value.
分 类 号:R318.01[医药卫生—生物医学工程]
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