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首页> 外文期刊>Applied bionics and biomechanics >Biomechanical Responses and Injury Characteristics of Knee Joints under Longitudinal Impacts of Different Velocities
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Biomechanical Responses and Injury Characteristics of Knee Joints under Longitudinal Impacts of Different Velocities

机译:不同速度纵向冲击下膝关节的生物力学反应及损伤特性

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摘要

Background and Objective. Knee joint collision injuries occur frequently in military and civilian scenarios, but there are few studies assessing longitudinal impacts on knee joints. In this study, the mechanical responses and damage characteristics of knee longitudinal collisions were investigated by finite element analysis and human knee impact tests. Materials and methods. Based on a biocollision test plateau, longitudinal impact experiments were performed on 4 human knee joints (2 in the left knee and 2 in the right knee) to measure the impact force and stress response of the bone. And then a finite element model of knee joint was established from the Chinese Visible Human (CVH), with which longitudinal impacts to the knee joint were simulated, in which the stress response was determined. The injury response of the knee joint-sustained longitudinal impacts was analyzed from both the experimental model and finite element analysis. Results. The impact experiments and finite element simulation found that low-speed impact mainly led to medial injuries and high-speed impact led to both medial and lateral injuries. In the knee joint impact experiment, the peak flexion angles were 13.8° ± 1.2, 30.2° ± 5.1, and 92.9° ± 5.45 and the angular velocities were 344.2 ± 30.8 rad/s, 1510.8 ± 252.5 rad/s, and 9290 ± 545 rad/s at impact velocities 2.5 km/h, 5 km/h, and 8 km/h, respectively. When the impact velocity was 8 km/h, 1 knee had a femoral condylar fracture and 3 knees had medial tibial plateau fractures or collapse fractures. The finite element simulation of knee joints found that medial cortical bone stress appeared earlier than the lateral peak and that the medial bone stress concentration was more obvious when the knee was longitudinally impacted. Conclusion. Both the experiment and FE model confirmed that the biomechanical characteristics of the injured femur and medial tibia are likely to be damaged in a longitudinal impact, which is of great significance fo
机译:背景和目标。膝关节碰撞伤害经常发生在军事和民用情景中,但很少有研究评估膝关节对纵向影响的研究。在这项研究中,通过有限元分析和人膝部冲击试验研究了膝关节纵向碰撞的机械响应和损伤特征。材料和方法。基于生物卷积测试平台,在4人膝关节(左膝关节2中的2位和右膝关节中的2)进行纵向冲击实验,以测量骨的冲击力和应力响应。然后从中国可见人(CVH)建立了膝关节的有限元模型,模拟了对膝关节的纵向冲击,其中确定了应力响应。从实验模型和有限元分析中分析了膝关节持续纵向冲击的伤害反应。结果。影响实验和有限元模拟发现,低速冲击主要导致内侧损伤和高速冲击导致内侧和侧向损伤。在膝关节冲击实验中,峰值屈曲角度为13.8°±1.2,30.2°±5.1和92.9°±5.45,角速度为344.2±30.8 rad / s,1510.8±252.5 rad / s,9290±545 rad / s在冲击速度下2.5 km / h,5km / h和8km / h。当冲击速度为8 km / h时,1膝尖端骨折,3个膝关节胫骨平台骨折或塌陷骨折。膝关节的有限元模拟发现,内侧皮质骨应力早于横向峰,当膝关节受到纵向撞击时,内侧骨应力浓度更加明显。结论。实验和Fe模式都证实,受伤股骨和内侧胫骨的生物力学特性可能在纵向冲击中受损,这具有重要意义

著录项

  • 来源
    《Applied bionics and biomechanics》 |2018年第2期|共11页
  • 作者单位

    Department of Orthopedics Daping Hospital and the Research Institute of Surgery Third Military Medical University Chongqing 400042 China;

    Department of Orthopedics Daping Hospital and the Research Institute of Surgery Third Military Medical University Chongqing 400042 China;

    Institute for Traffic Medicine State Key Laboratory of Trauma Burns &

    Combined Wound Third Military Medical University Chongqing 400042 China;

    Department of Orthopedics Daping Hospital and the Research Institute of Surgery Third Military Medical University Chongqing 400042 China;

    Institute for Traffic Medicine State Key Laboratory of Trauma Burns &

    Combined Wound Third Military Medical University Chongqing 400042 China;

    Institute for Traffic Medicine State Key Laboratory of Trauma Burns &

    Combined Wound Third Military Medical University Chongqing 400042 China;

    Institute for Traffic Medicine State Key Laboratory of Trauma Burns &

    Combined Wound Third Military Medical University Chongqing 400042 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 仿生学;
  • 关键词

    injuries occur frequently; mechanical responses; biocollision test plateau;

    机译:损伤经常发生;机械反应;生物胶凝测试高原;

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