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Activation of biceps femoris long head reduces tibiofemoral anterior shear force and tibial internal rotation torque in healthy subjects

机译:股二头肌长头的激活减少了健康受试者的胫骨股骨前剪切力和胫骨内旋转力矩

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摘要

The anterior cruciate ligament (ACL) provides resistance to tibial internal rotation torque and anterior shear at the knee. ACL deficiency results in knee instability. Optimisation of muscle contraction through functional electrical stimulation (FES) offers the prospect of mitigating the destabilising effects of ACL deficiency. The hypothesis of this study is that activation of the biceps femoris long head (BFLH) reduces the tibial internal rotation torque and the anterior shear force at the knee. Gait data of twelve healthy subjects were measured with and without the application of FES and taken as inputs to a computational musculoskeletal model. The model was used to investigate the optimum levels of BFLH activation during FES gait in reducing the anterior shear force to zero. This study found that FES significantly reduced the tibial internal rotation torque at the knee during the stance phase of gait (p = 0.0322) and the computational musculoskeletal modelling revealed that a mean BFLH activation of 20.8% (±8.4%) could reduce the anterior shear force to zero. At the time frame when the anterior shear force was zero, the internal rotation torque was reduced by 0.023 ± 0.0167 Nm/BW, with a mean 188% reduction across subjects (p = 0.0002). In conclusion, activation of the BFLH is able to reduce the tibial internal rotation torque and the anterior shear force at the knee in healthy control subjects. This should be tested on ACL deficient subject to consider its effect in mitigating instability due to ligament deficiency. In future clinical practice, activating the BFLH may be used to protect ACL reconstructions during post-operative rehabilitation, assist with residual instabilities post reconstruction, and reduce the need for ACL reconstruction surgery in some cases.
机译:前交叉韧带(ACL)可抵抗胫骨内部旋转扭矩和膝盖的前剪切力。 ACL缺乏会导致膝盖不稳定。通过功能性电刺激(FES)进行的肌肉收缩优化可减轻ACL​​缺乏的不稳定作用。这项研究的假设是股二头肌长头(BFLH)的激活会降低胫骨内部旋转扭矩和膝盖的前剪切力。在有或没有应用FES的情况下,对12名健康受试者的步态数据进行了测量,并将其作为计算性肌肉骨骼模型的输入。该模型用于研究在FES步态中BFLH激活的最佳水平,以将前剪切力降低至零。这项研究发现,FES可以显着降低步态步态阶段膝部的胫骨内部旋转扭矩(p = 0.0322),并且计算的肌肉骨骼模型表明,平均BFLH活化为20.8%(±8.4%)可以减少前切力强制为零。在前剪力为零的时间范围内,内部旋转扭矩降低了0.023±0.0167 Nm / BW,受试者平均降低了188%(p = 0.0002)。总之,在健康对照组中,BFLH的激活能够降低胫骨内部旋转扭矩和膝盖处的前剪切力。应在ACL缺乏的受试者上对此进行测试,以考虑其在缓解因韧带缺乏引起的不稳定方面的作用。在未来的临床实践中,在某些情况下,激活BFLH可用于在术后康复期间保护ACL重建,协助重建后残留不稳定性,并减少对ACL重建手术的需求。

著录项

  • 作者

    Azmi, NL; Ding, Z; Xu, R; Bull, AMJ;

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  • 年度 2017
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  • 入库时间 2022-08-20 21:06:55

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