首页> 外文期刊>American Journal of Sports Medicine >Electromechanical delay of the knee flexor muscles is impaired after harvesting hamstring tendons for anterior cruciate ligament reconstruction.
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Electromechanical delay of the knee flexor muscles is impaired after harvesting hamstring tendons for anterior cruciate ligament reconstruction.

机译:收获绳肌腱用于前十字韧带重建后,膝屈肌的机电延迟会受到损害。

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BACKGROUND: Changes in electromechanical delay during muscle activation are expected when there are substantial alterations in the structural properties of the musculotendinous tissue. In anterior cruciate ligament reconstruction, specific tendons are being harvested for grafts. Thus, there is an associated scar tissue development at the tendon that may affect the corresponding electromechanical delay. PURPOSE: This study was conducted to investigate whether harvesting of semitendinosus and gracilis tendons for anterior cruciate ligament reconstruction will affect the electromechanical delay of the knee flexors. STUDY DESIGN: Case-control study; Level of evidence, 3. METHODS: The authors evaluated 12 patients with anterior cruciate ligament reconstruction with a semitendinosus and gracilis autograft, 2 years after the reconstruction, and 12 healthy controls. Each participant performed 4 maximally explosive isometric contractions with a 1-minute break between contractions. The surface electromyographic activity of the biceps femoris and the semitendinosus was recorded from both legs during the contractions. RESULTS: The statistical comparisons revealed significant increases of the electromechanical delay of the anterior cruciate ligament-reconstructed knee for both investigated muscles. Specifically, the electromechanical delay values were increased for both the biceps femoris (P = .029) and the semitendinosus (P = .005) of the reconstructed knee when compared with the intact knee. Comparing the anterior cruciate ligament-reconstructed knee against healthy controls revealed similar significant differences for both muscles (semitendinosus, P = .011; biceps femoris, P = .024). CONCLUSION: The results showed that harvesting the semitendinosus and gracilis tendons for anterior cruciate ligament reconstruction significantly increased the electromechanical delay of the knee flexors. Increased hamstring electromechanical delay might impair knee safety and performance by modifying the transfer time of muscle tension to the tibia and therefore affecting muscle response during sudden movements in athletic activities. However, further investigation is required to identify whether the increased electromechanical delay of the hamstrings can actually influence optimal sports performance and increase the risk for knee injury in athletes with anterior cruciate ligament reconstructions.
机译:背景:当肌肉弹性组织的结构特性发生实质性变化时,可以预期肌肉激活过程中机电延迟的变化。在前交叉韧带重建中,正在收集特定的肌腱用于移植。因此,在肌腱处存在相关的疤痕组织发展,其可能影响相应的机电延迟。目的:进行这项研究是为了调查半腱和gra肌腱的前交叉韧带重建是否会影响膝盖屈肌的机电延迟。研究设计:病例对照研究;证据等级,3。方法:作者评估了12例半腱肌和gra肌自体移植重建前交叉韧带的患者,重建后2年,以及12名健康对照者。每个参与者进行了4次最大爆炸性等距收缩,收缩间隔为1分钟。在收缩期间从双腿记录股二头肌和半腱肌的表面肌电图活性。结果:统计学比较显示,对于两个被调查的肌肉,前十字韧带重建膝关节的机电延迟明显增加。具体而言,与完整的膝盖相比,重建的膝盖的股二头肌(P = .029)和半腱肌(P = .005)的机电延迟值都增加了。将前交叉韧带重建的膝关节与健康对照进行比较,发现两条肌肉的相似显着差异(半椎肌,P = .011;股二头肌,P = .024)。结论:结果显示,收集半腱肌和gra肌腱用于前交叉韧带重建显着增加了膝屈肌的机电延迟。绳肌机电延迟的增加可能会通过改变肌肉张力向胫骨的转移时间来损害膝盖的安全性和性能,从而影响体育活动中突然运动期间的肌肉反应。但是,需要进行进一步的研究以确定腿筋的机电延迟时间的增加是否会真正影响最佳运动表现,并增加前交叉韧带重建运动员的膝盖受伤风险。

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