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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Kinematic and Kinetic Interactions During Normal and ACL-Deficient Gait: A Longitudinal In Vivo Study
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Kinematic and Kinetic Interactions During Normal and ACL-Deficient Gait: A Longitudinal In Vivo Study

机译:正常和ACL缺乏步态期间的运动学和动力学相互作用:纵向体内研究。

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摘要

The interactions between different tissues within the knee joint and between different kinematic DOF and joint flexion during normal gait were investigated. These interactions change following ACL transection, in both short (4 weeks) and long (20 weeks) term. Ten skeletally mature sheep were used in control (N = 5) and experimental (N = 5) groups. The 6-DOF stifle joint motion was first measured during normal gait. The control group were then euthanized and mounted on a unique robotic testing platform for kinetic measurements. The experimental group underwent ACL transection surgery, and kinematics measurements were repeated 4 and 20 weeks post-operatively. The experimental group were then euthanized and underwent kinetic assessment using the robotic system. Results indicated significant couplings between joint flexion vs. abduction and internal tibial rotation, as well as medial, anterior, and superior tibial translations during both normal and ACL-deficient gait. Distinct kinetic interactions were also observed between different tissues within the knee joint. Direct relationships were found between ACL vs. LM/MM, and PCL vs. MCL loads during normal gait; inverse relationships were detected between ACL vs. PCL and PCL vs. LM/MM loads. These kinetic interaction patterns were considerably altered by ACL injury. Significant inter-subject variability in joint kinematics and tissue loading patterns during gait was also observed. This study provides further understanding of the in vivo function of different tissues within the knee joint and their couplings with joint kinematics during normal gait and over time following ACL transection.
机译:研究了正常步态下膝关节内不同组织之间以及运动学自由度和关节屈曲之间的相互作用。这些相互作用在ACL横切后随短期(4周)和长期(20周)改变。对照组(N = 5)和实验组(N = 5)使用十只骨骼成熟的绵羊。首先在正常步态期间测量6自由度窒息关节运动。然后对对照组实施安乐死,并安装在独特的机器人测试平台上进行动力学测量。实验组进行了ACL横切手术,并在术后4周和20周重复了运动学测量。然后对实验组实施安乐死,并使用机器人系统进行动力学评估。结果表明,在正常和ACL步态不佳的步态中,关节屈曲与外展,胫骨内部旋转以及胫骨内侧,前侧和上侧平移之间存在显着耦合。在膝关节内不同组织之间也观察到了明显的动力学相互作用。在正常步态中,ACL与LM / MM,PCL与MCL负载之间存在直接关系。在ACL与PCL和PCL与LM / MM负载之间检测到相反的关系。这些动力学相互作用模式被ACL损伤大大改变。还观察到步态期间关节运动学和组织负荷模式的受试者间显着差异。这项研究提供了对膝关节内不同组织的体内功能及其在正常步态和ACL横断后随时间变化与关节运动学的耦合的进一步了解。

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