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A Novel Application of Flexible Inertial Sensors for Ambulatory Measurement of Gait Kinematics

机译:柔性惯性传感器对动力学运动的柔性惯性传感器的新应用

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Ambulatory motion sensors can generate a mobile system for human kinematics measurement as an alternative to the more constrained optical motion capture systems. Flexible inertial sensors are emerging as a potential solution to overcome the drawback of the conventional inertial measurement sensors with a soft, flexible design that allows for direct body-conforming adhesion to the skin. Thus, this study aims to establish the viability of the flexible inertial sensors for the ambulatory measurement of human knee flexion-extension (F/E) during level walking. The accuracy of flexible inertial sensors with our proposed algorithm is investigated by comparing the derived kinematics with those measured using a conventional motion capture system. Three volunteers (two males and one female, aged 24-27) served as subjects. Three flexible inertial sensors were placed on the subjects' right legs, two on the thigh (lateral thigh and distal anterolateral thigh), and one on the lateral shank, and subjects performed level walking with varied walking cadence (80, 100, and 120 steps/min). The overall root-mean-square-error across all participants is 7.8 degrees for distal anterolateral thigh sensor (using the data of distal anterolateral thigh sensor and shank sensor to estimate knee F/E) and 4.5 degrees for lateral thigh sensor (using the data of lateral thigh sensor and shank sensor to estimate knee F/E). The results illustrate that our proposed method can generate comparable results with motion capture systems and is insensitive to different walking cadence. A significant effect of sensor placement is observed, and a more proximal lateral thigh strategy is suggested. The advantages of the flexible inertial sensors in human motion analysis over the existing inertial measurement units are also highlighted.
机译:动态运动传感器可以生成用于人类运动学测量的移动系统,作为更受限的光学运动捕获系统的替代方案。柔性惯性传感器作为潜在的解决方案,克服传统惯性测量传感器的缺点具有柔软的柔性测量传感器,允许直接身体构成对皮肤的粘附性。因此,本研究旨在建立柔性惯性传感器的可行性,用于在水平行走期间人膝弯曲延伸(F / e)的动态测量。通过使用传统运动捕获系统测量的那些,通过将衍生的运动学进行比较来研究柔性惯性传感器的精度。三名志愿者(两名男性和一名女性,24-27岁)担任主题。将三个柔性惯性传感器置于受试者的右腿上,两个在大腿上(横向大腿和远端前侧大腿),一个在横向柄上,并且受试者使用不同的行走乐度(80,100和120步)进行水平。 /分钟)。所有参与者的整体均方根误差为远端前部大管传感器的7.8度(使用远端前部大腿传感器和柄传感器的数据来估计膝关节F / e)和4.5度用于横向大腿传感器(使用数据横向大腿传感器和柄传感器来估计膝关节F / e)。结果说明我们所提出的方法可以通过运动捕获系统产生可比的结果,并且对不同的行走节点不敏感。观察到传感器放置的显着效果,并提出了更近的横向大腿策略。还突出了柔性惯性传感器在人类运动分析中的优点。

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