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首页> 外文期刊>Gait & posture >A kinematic analysis of the rapid step test in balance-impaired and unimpaired older women.
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A kinematic analysis of the rapid step test in balance-impaired and unimpaired older women.

机译:运动学分析在平衡受损和未受损的老年妇女中进行快速步测。

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摘要

Little is known about the kinematic and kinetic determinants that might explain age and balance-impairment alterations in the results of volitional stepping performance tests. Maximal unipedal stance time (UST) was used to distinguish "balance-impaired" old (BI, UST<10s, N=15, mean age=76 years) from unimpaired old (O, UST>30s, N=12, mean age=71 years) before they and healthy young females (Y, UST>30s, N=13, mean age=23 years) performed the rapid step test (RST). The RST evaluates the time required to take volitional front, side, and back steps of at least 80% maximum step length in response to verbal commands. Kinematic and kinetic data were recorded during the RST. The results indicate that the initiation phase of the step was the major source of age- and balance impairment-related delays. The delays in BI were primarily caused by increased postural adjustments prior to step initiation, as measured by center-of-pressure (COP) path length (p<0.003). The Step landing phase showed similar, but non-significant, temporal trends. Step length and peak center-of-mass (COM) deceleration during the Step-Out landing decreased in O by 18% (p=0.0002) and 24% (p=0.001), respectively, and a further 12% (p=0.04) and 18% (p=0.08) in BI. We conclude that the delay in BI step initiation was due to the increase in their postural adjustments prior to step initiation.
机译:关于运动学和动力学的决定因素知之甚少,这些决定因素可能解释了自愿踏步性能测试结果中的年龄和平衡障碍的改变。使用最大单足站立时间(UST)来区分“平衡受损”的老年人(BI,UST <10s,N = 15,平均年龄= 76岁)和未受损的老年人(O,UST> 30s,N = 12,平均年龄)在他们和健康的年轻女性(Y,UST> 30s,N = 13,平均年龄= 23岁)之前,他们进行了快速步测(RST)= 71岁。 RST会根据口头命令评估进行最大步长至少80%的自愿前,侧和后步所需的时间。在RST期间记录了运动和动力学数据。结果表明,该步骤的启动阶段是与年龄和平衡障碍相关的延迟的主要来源。 BI的延迟主要是由步长开始之前姿势的调整增加引起的,这是通过压力中心(COP)路径长度(p <0.003)来衡量的。阶梯降落阶段显示了相似但不重要的时间趋势。步距着陆时步长和峰值质量中心(COM)的O分别降低了18%(p = 0.0002)和24%(p = 0.001),进一步降低了12%(p = 0.04) )和BI中的18%(p = 0.08)。我们得出结论,BI步骤启动的延迟是由于他们在步骤启动之前姿势调整的增加。

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