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The effects of age on stabilization of the mediolateral trajectory of the swing foot

机译:年龄对摆脚内侧运动轨迹稳定的影响

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To ensure stability during gait, mediolateral placement of the swinging foot must be actively regulated. Logically this occurs through end-point control of the swing limb trajectory, the precision of which is quantified as step-width variability (SWV). Increased SWV with age may reflect reduced precision of this control, but cannot describe if, and how, age-related changes in lower limb kinematic synergies account for reduced precision. We analyzed joint configuration variance across steps within the uncontrolled manifold (UCM) hypothesis, which assumes that redundant sets of elemental variables are organized by the central nervous system to stabilize important performance variables. We tested whether: (1) regardless of age, the swing limb trajectory would be stabilized by a kinematic synergy of the lower limbs, and (2) the strength of the synergy would be weaker in older adults. Ten younger and ten older adults (65+ years) walked on a laboratory walkway at their preferred speed while kinematic data were collected. UCM analysis of segmental configuration variance was performed with respect to the mediolateral trajectory of the swing-limb ankle joint center. Throughout most of swing, the trajectory was stabilized by a kinematic synergy. Despite the greater segmental configuration variance of older adults, the strength of the synergy was not significantly different between groups. Moreover, the synergy index became negative during terminal swing and was not significantly correlated with SWV. Accordingly, co-variation among individual segmental trajectories is more important for stabilization of the swing trajectory during mid-swing, and, throughout swing, aging does not appear to affect this stabilization.
机译:为了确保步态稳定,必须积极调节摆脚的外侧位置。从逻辑上讲,这是通过对摆动肢体轨迹进行端点控制来实现的,其精确度可以量化为步幅可变性(SWV)。随年龄增长的SWV可能反映了这种控制的精度降低,但无法描述下肢运动协同中与年龄相关的变化是否以及如何导致精度下降。我们分析了不受控制的歧管(UCM)假设中各个步骤之间的关节配置差异,该假设假设中枢神经系统组织了冗余的元素变量集以稳定重要的性能变量。我们测试了:(1)不论年龄大小,下肢的运动协同作用都会稳定摆臂的轨迹,并且(2)老年人的协同作用强度会变弱。在收集运动学数据时,十名年轻和十名老年人(65岁以上)以他们喜欢的速度走在实验室的人行道上。针对摆肢踝关节中心的中外侧轨迹进行了节段性状变异的UCM分析。在整个挥杆过程中,运动协同作用使轨迹得以稳定。尽管老年人的节段构型差异较大,但各组之间的协同作用强度没有显着差异。此外,协同效应指数在终端挥杆过程中变为负数,与SWV无显着相关性。因此,各个分段轨迹之间的协变对于中间挥杆期间挥杆轨迹的稳定化更为重要,并且在整个挥杆过程中,老化似乎都不会影响这种稳定。

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