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THE EFFECT DF SUBTALAR ARTHRDDESIS ALIGNMENT ON ANKLE BIDMECHANICS

机译:距下关节韧带对踝关节生物力学的影响

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Background: The position, axis, and control of each lower extremity joint intimately affects adjacent joint function as well as whole limb performance. There is little describing the biomechanics of subtalar arthrodesis and none describing the effect that subtalar arthrodesis position has on ankle biomechanics. The purpose of the current study is to establish this effect on sagittal plane ankle biomechanics. Methods: A study was performed utilizing a three-dimensional, validated, computational model of the lower extremity. A subtalar arttirodesis was simulated from 20 degrees of varus to 20 degrees of valgus. For each of these subtalar arthrodesis positions, the ankle dorsiflexor and plantarflexor muscles' fiber force, moment arm, and moments were calculated throughout a physiologic range of motion. Results: Throughout ankle range of motion, plantarflexion and dorsiflexion strength varies with subtalar arthrodesis position. When the ankle joint is in neutral position, plantarflexion strength is maximized in 10 degrees of subtalar valgus and strength varies by a maximum of 2.6% from the peak 221 Nm. In a similar manner, with the ankle joint in neutral position, dorsiflexion strength is maximized with a subtalar joint arthrodesis in 5 degrees of valgus and strength varies by a maximum of 7.5% from the peak 46.8 Nm. The change in strength is due tn affected muscle fiber force generating capacities and muscle moment arms. Conclusion:The clinical significance of this study is that subtalar arthrodesis in a position of 5-10 degrees subtalar valgus has biomechanical advantage. This supports previous clinical outcome studies and offers biomechanical rationale for their generally favorable outcomes.
机译:背景:每个下肢关节的位置,轴线和控制都会密切影响相邻关节的功能以及整个肢体的性能。几乎没有描述距下关节固定的生物力学,也没有描述距下关节固定位置对踝关节生物力学的影响。本研究的目的是建立对矢状面踝生物力学的影响。方法:利用三维验证的下肢计算模型进行了研究。从20度内翻到20度外翻模拟距下关节置换术。对于每个这些距下关节固定位置,在整个生理运动范围内,都计算了踝背屈肌和fiber屈肌的纤维力,弯矩臂和弯矩。结果:在整个踝关节运动范围内,plant屈和背屈强度随距下关节固定位置的变化而变化。当踝关节处于中立位置时,足底屈曲强度在距下外翻10度处最大,并且强度从峰值221 Nm改变最大2.6%。以类似的方式,在踝关节处于中立位置的情况下,背屈强度在距骨下关节固定在5度外翻中时达到最大,并且强度从峰值46.8 Nm改变最大7.5%。强度的变化是由于肌肉纤维力量产生能力和肌肉力矩臂受到影响。结论:本研究的临床意义在于距骨下距5-10度的距骨下关节固定具有生物力学优势。这支持了先前的临床结果研究,并为它们总体上有利的结果提供了生物力学原理。

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