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Effect of acute noxious stimulation to the leg or back on muscle synergies during walking

机译:腿部或背部急性有害刺激对步行过程中肌肉协同作用的影响

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This study aimed to examine how acute muscle pain affects muscle coordination during gait with consideration of muscle synergies (i.e., group of muscles activated in synchrony), amplitude of muscle activity and kinematics. A secondary aim was to determine whether any adaptation was specific to pain location. Sixteen participants walked on a treadmill during 5 conditions [control, low back pain (LBP), washout LBP, calf pain (CalfP), and washout CalfP]. Five muscle synergies were identified for all of the conditions. Cross-validation analysis showed that muscle synergy vectors extracted for the control condition accounted for >81% of variance accounted for from the other conditions. Muscle synergies were altered very little in some participants (n = 7 for LBP; n = 10 for CalfP), but were more affected in the others (n = 9 for LBP; n = 6 for CalfP). No systematic differences between pain locations were observed. Considering all participants, synergies related to propulsion and weight acceptance were largely unaffected by pain, whereas synergies related to other functions (trunk control and leg deceleration) were more affected. Gastrocnemii activity was less during both CalfP and LBP than control. Soleus activity was further reduced during CalfP, and this was associated with reduced plantar flexion. Some lower leg muscles exhibited adaptations depending on pain location (e.g., greater vastus lateralis and rectus femoris activity during CalfP than LBP). Overall, these changes in muscle coordination involve a participant-specific strategy that is important to further explore, as it may explain why some people are more likely to develop persistence of a painful condition.
机译:这项研究旨在通过考虑肌肉协同作用(即同步激活的肌肉群),肌肉活动的幅度和运动学来研究急性肌肉疼痛如何在步态中影响肌肉协调性。第二个目的是确定是否有任何适应性疗法专门针对疼痛部位。 16名参与者在5种情况下[跑步,腰背痛(LBP),冲洗LBP,小腿痛(CalfP)和冲洗CalfP]在跑步机上行走。在所有情况下均确定了五种肌肉协同作用。交叉验证分析表明,从对照条件中提取的肌肉协同向量占其他条件下变异的> 81%。在某些参与者中,肌肉协同作用变化很小(LBP为n = 7; CalfP为n = 10),而其他参与者则受到更大的影响(LBP为n = 9; CalfP为n = 6)。没有观察到疼痛部位之间的系统差异。考虑到所有参与者,与推进和承重有关的协同作用在很大程度上不受疼痛影响,而与其他功能(躯干控制和腿部减速)有关的协同作用受到的影响更大。 CalfP和LBP期间的腓肠肌活性均低于对照组。在CalfP期间,比目鱼肌的活动进一步降低,这与足底屈曲减少有关。一些小腿肌肉表现出根据疼痛部位的适应性(例如,在CalfP期间比LBP更大的股外侧肌和股直肌活动)。总体而言,这些肌肉协调性变化涉及特定于参与者的策略,这对于进一步探索很重要,因为它可以解释为什么有些人更容易出现持续的疼痛状况。

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