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Muscle Activation Patterns are Bilaterally Linked during Split-Belt Treadmill Walking in Humans

机译:在人的皮带式跑步机行走过程中,肌肉激活模式是双向链接的

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摘要

There is growing evidence that human locomotion is controlled by flexibly combining a set of basic muscle activity patterns. To explore how these patterns are modified to cope with environmental constraints, ten healthy young adults first walked on a split-belt treadmill at symmetric speeds of 4 and 6 km/h for 2 min. An asymmetric condition was then performed for 10 min. in which treadmill speeds for the dominant (fast) and non-dominant (slow) sides were 6 and 4 km/h respectively. This was immediately followed by a symmetric speed condition of 4 km/h for 5 min. Gait kinematics and ground reaction forces were recorded. Electromyography (EMG) was collected from 12 lower limb muscles on each side of the body. Non-negative matrix factorization was applied to the EMG signals bilaterally and unilaterally to obtain basic activation patterns. A cross-correlation analysis was then used to quantify temporal changes in the activation patterns. During the early (first 10 strides) and late (final 10 strides) phases of the asymmetric condition, the patterns related to ankle plantar flexor (push-off) of the fast limb and quadriceps muscle (contralateral heel contact) of the slow limb occurred earlier in the gait cycle when compared to the symmetric conditions. Moreover, a bilateral temporal alignment of basic patterns between limbs was still maintained in the split-belt condition, since a similar shift was observed in the unilateral patterns. The results suggest that the temporal structure of these locomotor patterns is shaped by sensory feedback and that the patterns are bilaterally linked.
机译:越来越多的证据表明,通过灵活地组合一组基本的肌肉活动模式可以控制人的运动。为了探索如何修改这些模式以应对环境限制,十名健康的年轻人首先以对称速度4和6 km / h的速度在分体式皮带跑步机上行走2分钟。然后进行不对称条件10分钟。其中优势(快)和非优势(慢)跑步机的速度分别为6 km / h和4 km / h。随后立即以4 km / h的速度对称行驶5分钟。记录了步态运动学和地面反作用力。肌电图(EMG)是从身体各侧的12个下肢肌肉收集的。将非负矩阵分解应用于双边和单边的EMG信号,以获得基本激活模式。然后使用互相关分析来量化激活模式中的时间变化。在不对称状态的早期(前10个步幅)和晚期(最后10个步幅)阶段,发生了与快肢的踝plant屈(下垂)和慢肢的股四头肌(对侧脚跟接触)有关的模式与对称条件相比,步态周期更早。此外,由于在单带模式中观察到了类似的变化,因此在分裂带状态下,四肢之间基本模式的双边时间对齐仍然得以保持。结果表明,这些运动模式的时间结构受感觉反馈的影响,并且这些模式是双向链接的。

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