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Age-related changes in upper body adaptation to walking speed in human locomotion.

机译:与上运动有关的上身适应性与年龄的变化。

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Assessments of changes in gait stability due to aging and disease are predominantly based on lower extremity kinematic and kinetic data. These gait changes are also often based on comparisons at preferred speed only. The purpose of this experiment was to: (1) examine age-related changes in range of motion and coordination of segments of the upper body during locomotion; and (2) investigate the effects of a systematic walking velocity manipulation on rotational motion and coordination. Participants (n=30) walked on a motor driven treadmill at speeds ranging from 0.2 to 1.8m/s and were divided into three groups with mean ages of 23.3, 49.3 and 72.6 years, respectively. Seven high-speed infrared cameras were used to record three-dimensional kinematics of the pelvis, trunk and head. Dependent variables were amplitude of segmental and joint rotations, as well as relative phase to assess coordination between segments. Although no differences in stride parameters were found between the groups, age-related changes in movement amplitude in response to speed manipulations were observed for all segments and joints. Pelvic rotations in sagittal, frontal and transverse planes of motion were systematically reduced with age. Older individuals showed reduced trunk flexion-extension in the sagittal plane and increased trunk axial rotation in the transverse plane. Coordination analysis showed reduced compensatory movement between pelvis and trunk in older individuals. These findings support the importance of systematic manipulation of walking velocity and three-dimensional upper body kinematics in assessing age-related changes in locomotor stability and adaptability.
机译:由于衰老和疾病导致的步态稳定性变化的评估主要基于下肢运动学和动力学数据。这些步态变化通常也仅基于首选速度下的比较。本实验的目的是:(1)检查运动过程中与年龄相关的运动范围变化和上身各部分的协调; (2)研究系统的步行速度操纵对旋转运动和协调的影响。参与者(n = 30)在电动跑步机上行走,速度从0.2到1.8m / s不等,分为三组,分别为23.3、49.3和72.6岁。七个高速红外摄像机用于记录骨盆,躯干和头部的三维运动学。因变量是节段和关节旋转的幅度,以及用于评估节段之间的协调性的相对相位。尽管两组之间没有发现步幅参数的差异,但是在所有节段和关节中都观察到了与年龄有关的运动幅度响应速度操纵的变化。随着年龄的增长,在矢状,额和横运动平面的骨盆旋转被系统地减少。年龄较大的人在矢状面显示躯干屈伸减少,而在横切面躯干轴向旋转增加。协调分析显示,老年人骨盆和躯干之间的代偿运动减少。这些发现支持对步行速度和三维上身运动学进行系统操纵在评估与年龄相关的运动稳定性和适应性变化方面的重要性。

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