行走速度不影响跑步机行走时踝关节肌β -带肌间一致性的年龄差异

P. C. Santos, I. Zijdewind, C. Lamoth, L. T. Gobbi, T. Hortobágyi
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摘要

背景:通过研究年龄和速度对步行时β -相干性的影响是否不同,我们可以扩展有关年龄相关的步行神经控制损伤的有限证据。我们确定了年龄和步行速度对下肢肌肉对间肌间β带一致性的影响,以及步幅特征与这些肌肉对间肌间β带一致性的关系。方法:老年人(n=12)和年轻人(n=14)在跑步机上以固定(1.2 m/s)和快速(约1.3倍首选)的速度步行3min。对于100条优势腿跨步,我们测量了摆动和站立时的协同肌对(股二头肌(BF)-半腱肌、股直肌(RF)-股外侧肌(VL)、腓骨外侧肌(GL)-比目鱼肌(SL)、胫骨前肌(TA)-腓骨长肌(PL))和拮抗肌对(RF-BF和TA-GL)的长度、宽度、站立姿势、摆动时间、节奏和肌间β -一致性(15-35Hz)。结果:与固定速度相比,参与者步行时步幅长度(21%)、步幅(12%)、步长变异系数(CV)(14%)增加,步幅宽度(-20%)、站姿(-5%)和摇摆时间(-14%)减少,站姿早期TA-GL β一致性增强(69%,均p<0.01)。老年人与年轻人在摇摆后期和站立早期的快速步速较慢(~9%),步长CV较高(21%),GL-SL(-47%)和TA-PL (-60%) β -相干性较弱(p均<0.01)。结论:老年人与年轻人相比,步行时协同踝关节肌肉对之间的振荡耦合较低,但这种差异与在跑步机上行走时的步行速度无关。
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Walking speed does not affect age-differences in ankle muscle beta-band intermuscular coherence during treadmill walking
Background: By examining whether age and speed each differently affects beta-coherence during walking, we can extend the limited evidence on age-related impairment in neural control of walking. We determined the effects of age and walking speed on intermuscular beta band coherence between lower limb muscle pairs and the association between stride characteristics and intermuscular beta band coherence between these muscle pairs. Methods: Older (n=12) and younger (n=14) individuals walked on a treadmill at fixed (1.2 m/s) and fast (~1.3x preferred) speeds for 3min. For 100 dominant leg strides, we measured length, width, stance, swing time, cadence and intermuscular beta-coherence (15-35Hz) for the synergistic (biceps femoris (BF)-semitendinosus, rectus femoris (RF)-vastus lateralis (VL), gastrocnemius lateralis (GL)-soleus (SL), Tibialis anterior (TA)-peroneus longus (PL)) and the antagonistic (RF-BF and TA-GL) muscle pairs at swing and stance. Results: Comparing fast vs. fixed speed, participants walked with increased length (21%), cadence (12%), and coefficient of variation (CV) of stride length (14%), decreased stride width (-20%), and stance (-5%) and swing time (-14%) and with stronger TA-GL beta-coherence during early stance (69%, all p<0.01). Older vs. Younger individuals walked with slower fast gait speed (~9%), higher CV of stride length (21%), weaker GL-SL (-47%) and TA-PL (-60%) beta-coherences during the late swing and early stance phase, respectively (all p<0.01). No Group*Condition interactions occurred Conclusion: Oscillatory coupling between synergistic ankle muscle pairs during walking is lower in older vs. young individuals, but this difference is independent of walking speed while walking on a treadmill.
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