后外侧角结构可塑性条件下跟腱移植腘绳肌位置对膝关节稳定性影响的研究

M. Golovakha, S. Panchenko, Stanislav Bondarenko, Andrey Bezverkhyi
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引用次数: 0

摘要

膝关节后外侧角损伤是一种偶尔发生的损伤,可与后交叉韧带或前交叉韧带撕裂分离或合并。后外侧角损伤的关键环节是腘绳肌腱断裂,腘绳肌是小腿过度外旋的主要稳定器。客观的根据腘绳肌的恢复情况,确定胫骨后表面肌腱移植物的最佳固定位置,以确保小腿在外旋过程中的最大稳定性。方法。在ANSYS软件环境中,建立了腘肌不同附着点的膝关节模型。评估选择移植固定点的有效性的标准被选择为模型的有限部件单元的运动程度。后果当移植尽可能向外和向上固定在关节表面附近时,在所有方向上接受的最小运动。在没有腘绳肌腱的情况下,记录了对照模型在坐标轴方向上的最大值以及完全运动。移植物和对照模型中位移场的分布性质相同。最大的是在x轴方向(向外)有额外的位移。在平台的前边界,最大的负片(到目前为止重拨)在背面。y(前)轴向两侧的最大附加偏移固定在最左边的极限,最大负(后)轴向右偏移。结论。鉴于小腿在旋转负荷过程中的稳定性,最有效的方法是将腘绳肌移植物固定在腓骨后表面,尽可能晚,更靠近其心脏表面,在这种情况下,发现所有方向的尺寸都最小。在肌腱-腘绳肌较少的对照模型中获得的所有方向上的最大位移。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
STUDY OF THE INFLUENCE OF THE POSITION OF THE TENDON GRAFT HAMSTRING MUSCLE ON THE STABILITY OF THE KNEE JOINT UNDER THE CONDITIONS OF PLASTICITY OF THE STRUCTURES OF THE POSTEROLATERAL ANGLE
Damage to the posterolateral angle of the knee joint is an injury that occurs occasionally and can be isolated or combined with tears of the posterior or anterior cruciate ligaments. The key link of damage to the posterior lateral corner is the rupture of the tendon of the hamstring muscle, mained stabilizer of excess external rotation lower legs. Objective. Determine the optimal fixation position tendon graft on the posterior surface of the tibia subject to recovery of the hamstring muscle which ensuring the greatest stability of the lower leg during external rotation. Methods. Models of the knee joint were built with different  attachment points of the popliteal graft muscle in the ANSYS software environment. The criteria for evaluating the effectiveness of selecting the fixation point of the transplant were chosen as the degree of movement of the finite parts elements of the model. Results. The smallest movements in all directions received in the case when the transplant fixed as far as possible outwards and upwards, near the joint surface. Maximum — in the direction of the coordinate axes, as well as full movement were recorded for the control model, in the absence of the hamstring tendon The nature of the distribution of displacement fields in all models p graft and control were identical. Biggest there were additional displacements in the direction of the x axis (outward). on the front border of the platform, and the largest negative (so far redins) on the back. The largest additional shifts to the sides the y (front) axes are fixed at the leftmost limit and the largest negative (back) — to the rightю Conclusions. In view of the stability of the lower leg during rotational loading, the most effective is fixation of the hamstring graft on the back surface of the fibula is as late as possible and closer to its cardiac surface, finished in this case, the dimensions are found to be the smallest in all directions. The greatest displacement in all directions obtained in the control model for less tendon hamstring muscle.
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