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首页> 外文期刊>Journal of Engineering and Science in Medical Diagnostics and Therapy >Magnetic Resonance Image Based Computational Modeling for Anterior Cruciate Ligament Response at Low Knee Flexion Angle
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Magnetic Resonance Image Based Computational Modeling for Anterior Cruciate Ligament Response at Low Knee Flexion Angle

机译:基于磁共振图像的计算建模为前交叉韧带响应在低膝关节屈曲角度

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A three-dimensional (3D) finite element (FE) human knee joint model developed from magnetic resonance images (MRIs) has been validated with the sets of experimental results in a normalized scale. The performance of the 3D FE knee joint model has been tested, simulating a physical experiment. The experiment provided the direct measurement of anterior cruciate ligament (ACL) strains due to the forces of quadriceps muscle force (QMF) followed by ground reaction force (GRF) at low knee flexion. Accurate and precise anatomy has been obtained from segmented MRI images. The ACL strain subject to the loading was calculated and analyzed compared with the measured data from the experimental tests. The study shows that the pre-activated ACL strain, which is measured before the application of GRF, increased nonlinearly with increasing QMF before landing. However, the total ACL strain, which is measured after both QMF and GRF applied, reaches out to the limited constant value (6%) instead of crossing the ACL failure value. These results suggest that the forces generated from QMF and GRF at low flexion may not bring ACL to a failure level as presented in the experimental tests. The results of the FE model fall into the standard deviations of the 22 cadaveric knees testing results, which represents the successful mechanical modeling of ACL and the surrounding structures of the human knee joint. The model may further be used to investigate the risks of the ACL injury.
机译:一个三维(3 d)有限元(FE)人从磁膝关节模型磁共振图像(核磁共振成像)进行验证实验结果集的标准化规模。模型测试,模拟物理实验。测量前交叉韧带(ACL)菌株由于股四头肌肌肉的力量部队(QMF)其次是地面反作用力(平)在低膝盖弯曲。从分段MRI解剖获得图像。计算与分析实测数据的实验测试。研究表明,预先激活ACL应变,这是测量平的应用之前,的增加而非线性增加QMF之前着陆。测量QMF和天然气采收率应用后,到达到恒定值(6%),而不是限制穿越ACL失败的价值。建议从QMF和产生的力量平在低弯曲可能不会让ACL失败水平的实验测试。有限元模型的结果分为标准偏差的22个尸体膝盖测试结果,代表成功力学建模的ACL和周围人工膝关节的结构。进一步用于调查的风险ACL损伤。

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