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无症状个体在跑步受扰过程中的生物力学反馈和前馈反应。

Biomechanical feedback and feedforward responses during perturbed running in asymptomatic individuals.

作者信息

Khajooei Mina, Quarmby Andrew, Mayer Frank, Engel Tilman

机构信息

Sports Medicine and Sports Orthopaedics, University of Potsdam, University Outpatient Clinic, Potsdam, Germany.

出版信息

Front Sports Act Living. 2024 Nov 22;6:1403770. doi: 10.3389/fspor.2024.1403770. eCollection 2024.

Abstract

Assessment of biomechanical features whilst running on an uneven terrain plays an important role in identifying running-related injury mechanisms. However, feedback and feedforward motor responses and adaptations, an important component of gait retraining and injury rehabilitation programs, have been less investigated during running. Therefore, the current study assessed the whole-session responses and within-session adaptation mechanisms during perturbed running. Twenty three individuals performed an eight-minute perturbed treadmill running protocol with one-sided decelerative belt perturbations. Joint angle curves and muscle activity amplitudes were analysed throughout the running cycle, in both the perturbed and contralateral leg. For the whole-session responses, the average of 10 consecutive strides during the baseline trial and all perturbed strides from the perturbed running trial were compared. To assess within-session adaptation, the first perturbation was compared to the average of the last three perturbations. Data were analysed with one-dimensional statistical parametric mapping of Paired -tests to assess responses and adaptations to the perturbations ( < 0.025). Regarding whole-session responses (baseline vs. perturbations), statistically significant feedback (after perturbation) responses were detected in most measured joint angles and muscle activity of both perturbed and contralateral legs. Feedforward (before perturbation) responses for whole-session comparison were detected for most joint angles in the contralateral leg and only hip flexion in the perturbed leg. Feedforward muscle activities of whole-session responses were different in the biceps femoris, semitendinosus, and erector spinae of the perturbed leg, and the soleus of the contralateral leg. Regarding within-session (first vs. last three perturbations) adaptation, feedback adaptations included statistically significant changes in ankle, knee, and hip movements, and muscle activities in the perturbed leg, while the contralateral leg showed less adaptation. No significant feedforward within-session adaptations were observed in the perturbed leg, but the contralateral leg showed changes in ankle dorsiflexion, soleus activity, and erector spinae activity. Findings suggest that participants compensated perturbations during running by modifying muscle activities and movement patterns, primarily through feedback mechanisms in the perturbed leg, with limited feedforward adaptations. The current protocol may present a viable approach for testing and training postural control during running.

摘要

在不平坦地形上跑步时对生物力学特征进行评估,对于识别与跑步相关的损伤机制起着重要作用。然而,反馈和前馈运动反应及适应,作为步态再训练和损伤康复计划的一个重要组成部分,在跑步过程中较少受到研究。因此,本研究评估了在受干扰跑步过程中的全程反应和过程中的适应机制。23名受试者进行了一项为期8分钟的受干扰跑步机跑步试验,试验中采用单侧减速带干扰。在整个跑步周期内,对受干扰腿和对侧腿的关节角度曲线和肌肉活动幅度进行了分析。对于全程反应,比较了基线试验中连续10步的平均值与受干扰跑步试验中所有受干扰步的平均值。为了评估过程中的适应情况,将第一次干扰与最后三次干扰的平均值进行了比较。采用配对检验的一维统计参数映射分析数据,以评估对干扰的反应和适应情况(<0.025)。关于全程反应(基线与干扰),在受干扰腿和对侧腿的大多数测量关节角度和肌肉活动中,均检测到具有统计学意义的反馈(干扰后)反应。在对侧腿的大多数关节角度以及受干扰腿仅在髋关节屈曲方面,检测到了用于全程比较的前馈(干扰前)反应。全程反应的前馈肌肉活动在受干扰腿的股二头肌、半腱肌和竖脊肌以及对侧腿的比目鱼肌中有所不同。关于过程中(第一次与最后三次干扰)的适应情况,反馈适应包括受干扰腿的踝关节、膝关节和髋关节运动以及肌肉活动的统计学显著变化,而对侧腿的适应较少。在受干扰腿中未观察到显著的前馈过程中适应,但对侧腿在踝关节背屈、比目鱼肌活动和竖脊肌活动方面出现了变化。研究结果表明,参与者在跑步过程中通过改变肌肉活动和运动模式来补偿干扰,主要是通过受干扰腿中的反馈机制,前馈适应有限。当前的试验方案可能为测试和训练跑步过程中的姿势控制提供一种可行的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b73b/11620854/26c415ab13bf/fspor-06-1403770-g001.jpg

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