Laboratory of Neuro-Biomechanics, Department of Biomedical and Biotechnological Sciences, School of Medicine, University of Catania, 95123 Catania, Italy.
Residency Program of Physical Medicine and Rehabilitation, Department of Biomedical and Biotechnological Sciences, University of Catania, 95123 Catania, Italy.
Sensors (Basel). 2020 Jan 28;20(3):719. doi: 10.3390/s20030719.
Mobility across people with a large range of age was evaluated, for the first time, by using an instrumented timed up and go test (iTUG) based on signals acquired by a single wearable inertial sensor. Eighty healthy participants, from childhood to old age, performed the test, covering walking distances of 3 m and 7 m. Total time, temporal, and velocity parameters of linear and turning subcomponents of the test were quantified. While children, adults, and senior adults exhibited similar values for all the parameters, older adults showed increases in duration and reductions in velocity during the turning phases when compared with the other groups. an increase in velocity was observed during mid turning when the test was performed along the longer distance. Similarity across children, adults, and senior adults indicates that healthy individuals develop the abilities performed in the iTUG early, while the slowing down shown during the turning phases by the older adults may reflect the need to implement adaptive adjustments to face changes of direction. These results emphasize the idea that reducing equipment to a single sensor provides an appropriate quantification when the iTUG is used to investigate a broader age range or different levels of complexity.
首次使用基于单个可穿戴惯性传感器采集的信号的仪器化计时起立行走测试(iTUG)评估了具有广泛年龄范围的人群的活动能力。80 名健康参与者(从儿童到老年人)进行了 3 米和 7 米的行走距离测试,测试中量化了总时间、时间和线性及转弯子组件的速度参数。尽管儿童、成年人和老年人在所有参数上表现出相似的值,但与其他组相比,老年人在转弯阶段的持续时间增加,速度降低。当沿着更长的距离进行测试时,在转弯中期观察到速度的增加。儿童、成年人和老年人之间的相似性表明,健康个体在早期就发展出了 iTUG 中所执行的能力,而老年人在转弯阶段的减速可能反映了需要实施适应性调整以应对方向变化。这些结果强调了这样一种观点,即当使用 iTUG 调查更广泛的年龄范围或不同复杂程度时,将设备简化为单个传感器可以提供适当的量化。