首页> 外文会议>Annual rocky mountain bioengineering symposium;International ISA biomedical sciences instrumentation symposium >LOWER EXTREMITY MUSCLE FATIGUE INFLUENCES NONLINEAR VARIABILITY IN TRUNK ACCELERATIONS
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LOWER EXTREMITY MUSCLE FATIGUE INFLUENCES NONLINEAR VARIABILITY IN TRUNK ACCELERATIONS

机译:下肢肌肉疲劳影响步态加速中的非线性变异性

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Lower extremity fatigue has been associated with decline in postural stability, alteration of normal walking patterns and increased fall risk. Effects of lower extremity fatigue on amount of movement variability as assessed by linear variability such as standard deviation and root mean square is well known but there is lack of information about how fatigue influences nonlinear temporal structure of variability in healthy human gait. In this study ten subjects (5 males and 5 females) were asked to perform treadmill walking for three minutes with an Inertial Measurement Unit (IMU) sensor affixed at their trunk level, thereafter the participants conducted squatting exercises and fatigue was induced as per standard fatigue protocol. The participants were asked to walk again on treadmill at their preferred walking speed for three minutes. The signals derived from the inertial sensor were used to compute stride interval time series (SIT) and signal magnitude difference (SMD) time series signals. These SIT and SMD signals were analyzed for non-linear variability such as complexity (approximate entropy and multiscale entropy) and Detrended Fluctuation Analysis (DFA). It was found that that there was significantly higher complexity in SMD signals due to fatigue inducement (p=0.04). Similarly, it was also found that fatigue significantly decreased fractal properties of SMD signals (p=0.013). In conclusion, lower extremity localized muscle fatigue influences magnitude of kinematic variability and induced anti-persistence in the trunk kinematics. In future, more work is needed to understand how kinematic variability in angular velocities due to fatigue may affect fall risk in healthy adults.
机译:下肢疲劳与姿势稳定性下降,正常步行方式改变和跌倒风险增加有关。下肢疲劳对运动变异量的影响是众所周知的,通过线性变异(例如标准差和均方根)可以评估该效应,但是缺乏关于疲劳如何影响健康人步态的非线性时间结构的信息。在这项研究中,要求十名受试者(5名男性和5名女性)在其躯干水平贴有惯性测量单元(IMU)传感器的情况下在跑步机上行走3分钟,然后进行蹲下锻炼,并按照标准疲劳诱发疲劳协议。要求参与者再次以他们喜欢的步行速度在跑步机上行走三分钟。从惯性传感器获得的信号用于计算步幅间隔时间序列(SIT)和信号幅度差(SMD)时间序列信号。分析了这些SIT和SMD信号的非线性可变性,例如复杂性(近似熵和多尺度熵)和去趋势波动分析(DFA)。结果发现,由于疲劳诱导,SMD信号的复杂性明显更高(p = 0.04)。同样,还发现疲劳显着降低了SMD信号的分形特性(p = 0.013)。总之,下肢局部肌肉疲劳会影响躯干运动学的运动学变异性大小和诱发的持久性。将来,需要做更多的工作来了解由于疲劳引起的角速度运动变化如何影响健康成年人的跌倒风险。

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