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在自愿性足尖行走过程中,需要改变肌肉贡献来支撑站立肢体。

Altered Muscle Contributions are Required to Support the Stance Limb During Voluntary Toe-Walking.

作者信息

De Pieri Enrico, Romkes Jacqueline, Wyss Christian, Brunner Reinald, Viehweger Elke

机构信息

Laboratory for Movement Analysis, University of Basel Children's Hospital, Basel, Switzerland.

Department of Biomedical Engineering, University of Basel, Basel, Switzerland.

出版信息

Front Bioeng Biotechnol. 2022 Apr 11;10:810560. doi: 10.3389/fbioe.2022.810560. eCollection 2022.

Abstract

Toe-walking characterizes several neuromuscular conditions and is associated with a reduction in gait stability and efficiency, as well as in life quality. The optimal choice of treatment depends on a correct understanding of the underlying pathology and on the individual biomechanics of walking. The objective of this study was to describe gait deviations occurring in a cohort of healthy adult subjects when mimicking a unilateral toe-walking pattern compared to their normal heel-to-toe gait pattern. The focus was to characterize the functional adaptations of the major lower-limb muscles which are required in order to toe walk. Musculoskeletal modeling was used to estimate the required muscle contributions to the joint sagittal moments. The support moment, defined as the sum of the sagittal extensive moments at the ankle, knee, and hip joints, was used to evaluate the overall muscular effort necessary to maintain stance limb stability and prevent the collapse of the knee. Compared to a normal heel-to-toe gait pattern, toe-walking was characterized by significantly different lower-limb kinematics and kinetics. The altered kinetic demands at each joint translated into different necessary moment contributions from most muscles. In particular, an earlier and prolonged ankle plantarflexion contribution was required from the soleus and gastrocnemius during most of the stance phase. The hip extensors had to provide a higher extensive moment during loading response, while a significantly higher knee extension contribution from the vasti was necessary during mid-stance. Compensatory muscular activations are therefore functionally required at every joint level in order to toe walk. A higher support moment during toe-walking indicates an overall higher muscular effort necessary to maintain stance limb stability and prevent the collapse of the knee. Higher muscular demands during gait may lead to fatigue, pain, and reduced quality of life. Toe-walking is indeed associated with significantly larger muscle forces exerted by the quadriceps to the patella and prolonged force transmission through the Achilles tendon during stance phase. Optimal treatment options should therefore account for muscular demands and potential overloads associated with specific compensatory mechanisms.

摘要

足尖行走是多种神经肌肉疾病的特征,与步态稳定性、效率以及生活质量的下降有关。治疗方法的最佳选择取决于对潜在病理状况的正确理解以及个体的行走生物力学情况。本研究的目的是描述一组健康成年受试者在模仿单侧足尖行走模式时与正常足跟到足尖步态模式相比所出现的步态偏差。重点是描述为了实现足尖行走所需的主要下肢肌肉的功能适应性。采用肌肉骨骼模型来估计肌肉对关节矢状面力矩的所需贡献。支撑力矩定义为踝关节、膝关节和髋关节矢状面伸展力矩之和,用于评估维持支撑腿稳定性和防止膝关节塌陷所需的整体肌肉力量。与正常足跟到足尖步态模式相比,足尖行走的特征是下肢运动学和动力学存在显著差异。每个关节处改变的动力学需求转化为大多数肌肉不同的必要力矩贡献。特别是,在大部分支撑期,比目鱼肌和腓肠肌需要更早且更长时间地提供踝关节跖屈贡献。髋伸肌在负荷反应期间必须提供更高的伸展力矩,而在支撑中期股四头肌需要提供显著更高的膝关节伸展贡献。因此,为了实现足尖行走,在每个关节水平都需要进行功能性的代偿性肌肉激活。足尖行走时更高的支撑力矩表明维持支撑腿稳定性和防止膝关节塌陷需要整体更高的肌肉力量。步态期间更高的肌肉需求可能导致疲劳、疼痛和生活质量下降。事实上,足尖行走与股四头肌对髌骨施加的显著更大肌肉力量以及支撑期通过跟腱的延长力传递有关。因此,最佳治疗方案应考虑肌肉需求以及与特定代偿机制相关的潜在过载情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2458/9036482/d47c65d55224/fbioe-10-810560-g001.jpg

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