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首页> 外文期刊>Gait & posture >A dynamic model of quadriceps and hamstrings function.
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A dynamic model of quadriceps and hamstrings function.

机译:股四头肌和绳肌功能的动态模型。

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摘要

The mechanical effect of hamstrings and quadriceps contractions on hip and knee joint motion was investigated using a dynamic model of the musculoskeletal system. The model consisted of 13 anatomically linked segments. The geometry of bones, joints, and muscle attachments was derived from magnetic resonance imaging of a healthy adult. The knee joint was represented by a crossing bars linkage to simulate cruciate ligament function, and muscles were represented by spring actuators. The effects of hamstring and quadriceps contractions, in various combinations, were tested on different configurations of hip and knee joint position in the absence of gravity. In the standing posture, with the foot free to move and the pelvis fixed in space, the effect of semimembranosus (SM) contraction was hip and knee flexion. If the foot was fixed to the ground, SM contraction produced hip extension and knee flexion. The addition of quadriceps contraction reduced or abolished the knee flexion and enhanced hip extension. In all other simulations, SM alone produced knee flexion and hip extension and the combination of SM with vastus (VA) and rectus femoris (RF) contractions resulted in knee extension and enhanced hip extension. Our findings suggest that co-contraction of quadriceps and hamstrings may be a strategy to increase the hip extension function of the hamstrings.
机译:使用肌肉骨骼系统的动力学模型研究了绳肌和股四头肌收缩对髋关节和膝关节运动的机械作用。该模型由13个解剖上相连的节段组成。骨骼,关节和肌肉附件的几何形状来自健康成年人的磁共振成像。膝关节由横杆连杆代表,以模拟十字韧带功能,肌肉由弹簧致动器代表。在没有重力的情况下,测试了绳肌和股四头肌收缩的各种组合对髋和膝关节位置的不同构型的影响。在站立姿势下,脚自由移动且骨盆固定在空间中,半膜(SM)收缩的作用是髋和膝屈曲。如果将脚固定在地上,SM收缩会导致髋部伸展和膝盖弯曲。股四头肌的收缩减少或消除了膝盖的屈曲并增强了髋关节的伸展。在所有其他模拟中,仅SM会导致膝关节屈曲和髋关节伸展,而SM与股骨头(VA)和股直肌(RF)的收缩相结合会导致膝盖伸展和髋关节伸展增强。我们的发现表明,股四头肌和腿筋的共同收缩可能是增加腿筋的髋部伸展功能的一种策略。

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