School of Physiotherapy, Faculty of Health, Dalhousie University, Halifax, NS, Canada; School of Biomedical Engineering, Faculty of Engineering, Dalhousie University, Halifax, NS, Canada.
School of Physiotherapy, Faculty of Health, Dalhousie University, Halifax, NS, Canada.
J Electromyogr Kinesiol. 2020 Apr;51:102401. doi: 10.1016/j.jelekin.2020.102401. Epub 2020 Feb 11.
The reliability of lower extremity muscle activation patterns has not been clearly studied in a dual-belt instrumented treadmill environment. The primary study objective was to quantify the day-to-day reliability of quadriceps, hamstrings, gastrocnemius and gluteus medius activation patterns in healthy young adult gait. Secondarily, the reliability of spatiotemporal, and knee/hip motion and moment-based gait outcomes was assessed.
20 young adults were recruited and tested on two separate days. Using standardized procedures, participants were prepared for surface electromyography and lower extremity motion capture. All individuals walked on a dual-belt instrumented treadmill while muscle activation, segment motions and ground reaction forces were recorded. Sagittal plane motion and net external sagittal and frontal plane moments were calculated. Discrete biomechanical and muscle activation measures were calculated, and non-negative matrix factorization extracted amplitude and temporal muscle activation features. Intraclass Correlation Coefficients, Standard Error of Measurement and Minimum Detectable Change were calculated.
High to excellent Intraclass correlation coefficients were found between visits for most primary and secondary outcomes. The absolute and relative reliability, including Minimum Detectable Change values, provided in this study support the use of dual-belt instrumented treadmill walking as an acceptable medium to collect biomechanical and lower extremity EMG outcomes for future studies.
在双带式仪器化跑步机环境中,下肢肌肉激活模式的可靠性尚未得到明确研究。主要研究目的是量化健康年轻成年人步态中股四头肌、腘绳肌、腓肠肌和臀中肌激活模式的日常可靠性。其次,评估时空以及膝关节/髋关节运动和基于力矩的步态结果的可靠性。
招募了 20 名年轻人,并在两天内进行了测试。使用标准化程序,为表面肌电图和下肢运动捕捉做好准备。所有参与者都在双带式仪器化跑步机上行走,同时记录肌肉激活、肢体运动和地面反作用力。计算矢状面运动和净矢状面和额状面外部力矩。计算离散生物力学和肌肉激活测量值,并通过非负矩阵分解提取幅度和时间肌肉激活特征。计算了组内相关系数、测量标准误差和最小可检测变化。
大多数主要和次要结果在两次访问之间都发现了高到极好的组内相关系数。本研究提供的绝对和相对可靠性,包括最小可检测变化值,支持使用双带式仪器化跑步机行走作为一种可接受的方式来收集未来研究的生物力学和下肢肌电图结果。