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首页> 外文期刊>American Journal of Sports Medicine >The relationship between quadriceps muscle force, knee flexion, and anterior cruciate ligament strain in an in vitro simulated jump landing.
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The relationship between quadriceps muscle force, knee flexion, and anterior cruciate ligament strain in an in vitro simulated jump landing.

机译:体外模拟跳跃着地时股四头肌肌肉力量,膝盖屈曲和前交叉韧带应变之间的关系。

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BACKGROUND: An instrumented cadaveric knee construct was used to quantify the association between impact force, quadriceps force, knee flexion angle, and anterior cruciate ligament relative strain in simulated unipedal jump landings. HYPOTHESIS: Anterior cruciate ligament strain will correlate with impact force, quadriceps force, and knee flexion angle. STUDY DESIGN: Descriptive laboratory study. METHODS: Eleven cadaveric knees (age, 70.8 [19.3] years; 5 male; 6 female) were mounted in a custom fixture with the tibia and femur secured to a triaxial load cell. Quadriceps, hamstring, and gastrocnemius muscle forces were simulated using pretensioned steel cables (stiffness, 7 kN/cm), and the quadriceps tendon force was measured using a load cell. Mean strain on the anteromedial bundle of the anterior cruciate ligament was measured using a DVRT. With the knee in 25 degrees of flexion, the construct was vertically loaded by an impact force initially directed 4 cm posterior to the knee joint center. Tibiofemoral kinematics was measured using a 3D optoelectronic tracking system. RESULTS: The increase in anterior cruciate ligament relative strain was proportional to the increase in quadriceps force (r(2) = 0.74; P < .00001) and knee flexion angle (r(2) = 0.88; P < .00001) but was not correlated with the impact force (r(2) = 0.009; P = .08). CONCLUSION: The increase in knee flexion and quadriceps force during this simulated 1-footed landing strongly influenced the relative strain on the anteromedial bundle of the anterior cruciate ligament. CLINICAL RELEVANCE: These results suggest that even in the presence of knee flexor muscle forces, the increase in quadriceps force required to prevent the knee from flexing during landing can place the anterior cruciate ligament at risk for large strains.
机译:背景:在模拟的单足跳跃着陆中,使用仪器化的尸体膝盖构造物来量化冲击力,股四头肌力,膝盖屈曲角度和前十字韧带相对应变之间的关联。假设:前十字韧带应变将与冲击力,股四头肌力和膝盖屈曲角度相关。研究设计:描述性实验室研究。方法:将11具尸体膝盖(年龄70.8 [19.3]岁; 5例男性; 6例女性)安装在定制的固定装置中,胫骨和股骨固定在三轴测力传感器上。使用预张紧的钢缆(刚度,7 kN / cm)模拟股四头肌,绳肌和腓肠肌的力量,并使用测力传感器测量股四头肌的肌腱力。使用DVRT测量前交叉韧带前内侧束的平均应变。膝盖弯曲25度时,通过最初指向膝盖关节中心后4 cm的冲击力垂直加载结构。使用3D光电跟踪系统测量胫股运动学。结果:前十字韧带相对应变的增加与股四头肌力量的增加(r(2)= 0.74; P <.00001)和膝关节屈曲角度的增加(r(2)= 0.88; P <.00001)成正比。与冲击力无关(r(2)= 0.009; P = .08)。结论:在模拟的1脚着陆过程中,膝盖屈曲和股四头肌力量的增加强烈影响了前交叉韧带前束的相对应变。临床意义:这些结果表明,即使在存在屈膝肌力的情况下,为防止膝盖着陆时屈曲所需要的股四头肌力量的增加也可能使前交叉韧带承受大拉伤的风险。

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