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Effects of the degree of freedom and assistance characteristics of powered ankle-foot orthoses on gait stability

机译:动力踝足自由度和辅助特征的影响对步态稳定性

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We studied the use of powered ankle-foot orthoses (PAFOs) and walking stability of the wearers, focusing on the ankle joint, which is known to play a critical role in gait stability. Recognizing that the subtalar joint is an important modulator of walking stability, we conducted the walking experiment on a treadmill by applying varying assistance techniques to the 2-degree-of-freedom (DOF) PAFO, which has the subtalar joint as the rotating axis, and the commonly used 1-DOF PAFO. The participants were 8 healthy men (mean±SD: height, 174.8±7.1 cm; weight, 69.8±6.5 kg; and age, 29.1±4.8 years) with no history of gait abnormality. Center of pressure (COP) was measured with an in-shoe pressure sensor, and stability was estimated on the basis of the angular acceleration measured with the inertial measurement unit attached to the trunk. The experimental results of the 2-DOF PAFO, with or without assistance, showed a significantly higher stability than those of the 1-DOF PAFO (up to 23.78%, p0.0326). With the 1-DOF PAFO, the stability deteriorated with the increase in the degree of assistance provided. With the 2-DOF PAFO, this tendency was not observed. Thus, the importance of the subtalar joint was proven using PAFOs. The mean position analysis of the COP during the stance phase confirmed that the COP highly correlated with stability (Pearson correlation coefficient: ?0.6607). Thus, we conclude that only the 2-DOF PAFO can maintain walking stability, regardless of the assistance characteristics, by preserving the COP in the medial position through eversion. Awareness regarding the role of the subtalar joint is necessary during the manufacture or use of PAFOs, as lack of awareness could lead to the degradation of the wearer’s gait stability, regardless of effective assistance, and deteriorate the fundamental functionality of PAFO.
机译:我们研究了使用动力的脚踝脚矫形器(PAFOS)和佩戴者的行走稳定性,专注于踝关节,已知在步态稳定性中发挥关键作用。认识到子间隙接头是行走稳定性的重要调制器,我们通过将不同的辅助技术应用于2-自由度(DOF)PAFO,在速度(DOF)PAFO上,我们在跑步机上进行了行走实验,该辅助技术与旋转轴具有小间隙接头,和常用的1-DOF PAFO。参与者是8名健康男性(平均值±SD:高度,174.8±7.1厘米;体重,69.8±6.5千克;和年龄,29.1±4.8岁),没有步态异常的历史。用鞋内压力传感器测量压力中心(COP),基于用附接到行李箱的惯性测量单元测量的角度加速度估计稳定性。 2-DOF PAFO,有或没有辅助的实验结果表明稳定性高于1-DOF PAFO(高达23.78%,P <0.0326)。通过1-DOF PAFO,稳定性随着所提供的辅助程度而恶化。随着2-DOF PAFO,未观察到这种趋势。因此,使用Pafos证明了子间隙联合的重要性。姿势相期间COP的平均位置分析证实,警察与稳定性高度相关(Pearson相关系数:?0.6607)。因此,我们得出结论,只有2-DOF PAFO可以维持行走稳定性,无论辅助特性,通过输出保留内侧位置处。在制造或使用Pafos期间,由于缺乏意识可能导致佩戴者的步态稳定性的降低,无论有效的援助,以及恶化,而不管有效的援助,还有意识,还有意识的认识是否可能导致穿着者的步态稳定性的降低,并恶化了PAFO的基本功能。

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