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Anterior Cruciate Ligament Injury: Compensation during Gait using Hamstring Muscle Activity

机译:前交叉韧带损伤:使用Ham绳肌活动进行步态补偿

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摘要

Previous research has shown that an increase in hamstring activation may compensate for anterior tibial transalation (ATT) in patients with anterior cruciate ligament deficient knee (ACLd); however, the effects of this compensation still remain unclear. The goals of this study were to quantify the activation of the hamstring muscles needed to compensate the ATT in ACLd knee during the complete gait cycle and to evaluate the effect of this compensation on quadriceps activation and joint contact forces. A two dimensional model of the knee was used, which included the tibiofemoral and patellofemoral joints, knee ligaments, the medial capsule and two muscles units. Simulations were conducted to determine the ATT in healthy and ACLd knee and the hamstring activation needed to correct the abnormal ATT to normal levels (100% compensation) and to 50% compensation. Then, the quadriceps activation and the joint contact forces were calculated. Results showed that 100% compensation would require hamstring and quadriceps activations larger than their maximum isometric force, and would generate an increment in the peak contact force at the tibiofemoral (115%) and patellofemoral (48%) joint with respect to the healthy knee. On the other hand, 50% compensation would require less force generated by the muscles (less than 0.85 of maximum isometric force) and smaller contact forces (peak tibiofemoral contact force increased 23% and peak patellofemoral contact force decreased 7.5% with respect to the healthy knee). Total compensation of ATT by means of increased hamstring activity is possible; however, partial compensation represents a less deleterious strategy.
机译:先前的研究表明,对于前交叉韧带缺乏型膝关节(ACLd)的患者,绳肌激活的增加可能弥补了胫骨前移位(ATT)的不足。但是,这种补偿的效果仍然不清楚。这项研究的目的是量化在整个步态周期中补偿ACLd膝盖的ATT所需的绳肌的激活,并评估这种补偿对股四头肌激活和关节接触力的影响。使用膝盖的二维模型,包括胫股和fe股关节,膝盖韧带,内侧囊和两个肌肉单元。进行了模拟以确定健康和ACLd膝盖的ATT以及将异常ATT校正到正常水平(100%补偿)和50%补偿所需的绳肌激活。然后,计算出股四头肌激活和关节接触力。结果表明,相对于健康的膝盖,100%的补偿将需要使绳肌和股四头肌的激活大于其最大等轴测力,并使胫股(115%)和pa股(48%)关节的峰值接触力增加。另一方面,相对于健康人,50%的补偿将需要较少的肌肉力量(小于最大等轴测力的0.85)和较小的接触力(峰值胫股接触力增加23%,pa股顶峰接触力减少7.5%)。膝盖)。通过增加绳肌活动来完全补偿ATT;但是,部分补偿代表了一种较少有害的策略。

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