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Dynamics and stability of muscle activations during walking in healthy young and older adults.

机译:在健康的年轻人和老年人中行走期间肌肉激活的动力学和稳定性。

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To facilitate stable walking, humans must generate appropriate motor patterns and effective corrective responses to perturbations. Yet most EMG analyses do not address the continuous nature of muscle activation dynamics over multiple strides. We compared muscle activation dynamics in young and older adults by defining a multivariate state space for muscle activity. Eighteen healthy older and 17 younger adults walked on a treadmill for 2 trials of 5 min each at each of 5 controlled speeds (80-120% of preferred). EMG linear envelopes of v. lateralis, b. femoris, gastrocnemius, and t. anterior of the left leg were obtained. Interstride variability, local dynamic stability (divergence exponents), and orbital stability (maximum Floquet multipliers; FM) were calculated. Both age groups exhibited similar preferred walking speeds (p=0.86). Amplitudes and variability of individual EMG linear envelopes increased with speed (p<0.01) in all muscles but gastrocnemius. Older adults also exhibited greater variability in b. femoris and t. anterior (p<0.004). When comparing continuous multivariate EMG dynamics, older adults demonstrated greater local and orbital instability of their EMG patterns (p<0.01). We also compared how muscle activation dynamics were manifested in kinematics. Local divergence exponents were strongly correlated between kinematics and EMG, independent of age and walking speed, while variability and max FM were not. These changes in EMG dynamics may be related to increased neuromotor noise associated with aging and may indicate subtle deterioration of gait function that could lead to future functional declines.
机译:为了促进稳定的行走,人类必须产生适当的运动模式和对摄动的有效纠正反应。然而,大多数肌电图分析并未解决跨多个步幅的肌肉激活动力学的连续性。通过定义肌肉活动的多元状态空间,我们比较了年轻人和老年人的肌肉激活动态。 18名健康的老年人和17名年轻的成年人在跑步机上以5种可控速度中的每一种进行2次5分钟的试验(优选80-120%)。 v.lateralis的EMG线性包络,b。股骨,腓肠肌和t。获得左腿的前部。计算跨步变异性,局部动态稳定性(发散指数)和轨道稳定性(最大Floquet乘数; FM)。两个年龄组均表现出相似的首选步行速度(p = 0.86)。除腓肠肌外,所有肌肉的单个EMG线性包膜的振幅和变异性均随速度增加(p <0.01)。老年人的b也表现出较大的变异性。股骨和T。前部(p <0.004)。当比较连续的多元肌电图动力学时,老年人表现出其肌电图模式更大的局部和轨道不稳定性(p <0.01)。我们还比较了肌肉运动动力学在运动学中的表现方式。运动学和肌电图之间的局部差异指数与年龄和步行速度无关,而与变异性和最大调频无关。 EMG动态的这些变化可能与与衰老相关的神经运动噪声增加有关,并且可能表明步态功能的细微下降,可能导致将来的功能下降。

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