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Sex differences in coupled knee motions during the transition from non-weight bearing to weight bearing.

机译:从非承重过渡到承重的过程中,耦合膝关节运动的性别差异。

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Knee ligament injuries frequently happen when the joint transitions from non-weight bearing (NWB) to weight bearing (WB). To gain insight into the mechanism that produces these injuries, physically active females (N = 41) and males (N = 39) underwent measurement of coupled tibiofemoral joint displacements [anterior tibial translation (ATT) and varus-valgus and internal-external rotations] and neuromuscular responses as the knee transitioned from NWB to WB in response to a 40% body weight load applied under the control of gravity. The transition from NWB to WB produced no difference in ATT between males and females; however, significant sex-based differences were noted for both transverse and frontal plane knee motions. With the knee NWB, females were in a greater absolute valgus compared to males (6.6 vs. 5.0 degrees), and moved through greater varus motion than males during the transition from NW to WB (2.3 vs. 1.4 degrees), resulting in similar valgus alignment for both sexes at peak WB (4.3 vs. 3.6 degrees). In the transverse plane, the knees of females were positioned in more external rotation compared to males when NWB (1.4 vs. -0.3 degrees), then females externally rotated their knees while males internally rotated their knees during the transition from NWB to WB. This resulted in a 3.4 degrees difference in transverse plane knee position at peak WB (2.3 vs. -1.1 degrees). Our findings suggest that the coupled knee motions produced during the transition from NWB to WB are sex dependent, and may provide insight into the knee motion patterns that place females at increased risk of knee ligament injury.
机译:当关节从非承重(NWB)过渡到承重(WB)时,经常发生膝韧带损伤。为了深入了解造成这些伤害的机制,对体力活动的女性(N = 41)和男性(N = 39)进行了耦合的胫股关节移位[胫骨前移(ATT),内翻-内翻和内外旋转]测量以及在重力控制下施加的40%体重负荷时,膝盖从NWB过渡到WB时产生的神经肌肉反应。从NWB向WB的过渡在男性和女性之间的ATT方面没有差异;然而,在横向和额前膝关节运动中都发现了明显的性别差异。与男性相比,膝关节NWB的女性绝对外翻幅度更大(6.6与5.0度),并且在从NW到WB的过渡过程中,女性比男性具有更大的内翻运动(2.3与1.4度),导致相似的外翻两性在WB最高时(4.3与3.6度)对齐。在横向平面中,在NWB(1.4与-0.3度)时,雌性的膝盖比雄性的膝盖更多地向外旋转,然后在从NWB过渡到WB的过程中,雌性从外部旋转膝盖,而雄性从内部旋转膝盖。这导致在峰值WB处横切面膝盖位置相差3.4度(2.3与-1.1度)。我们的研究结果表明,从NWB到WB的过渡过程中产生的耦合的膝盖运动与性别有关,并且可以提供使女性处于膝盖韧带受伤风险增加的膝盖运动模式的见解。

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