Industrial Technology Center of Wakayama Prefecture, Wakayama, Japan,
Environ Health Prev Med. 2007 May;12(3):111-8. doi: 10.1007/BF02898025.
The purpose of this study is to develop a new system for measuring leg motions using a portable three-dimensional accelerometer. The measuring system is composed of acceleration sensors (Micro Stone, MA3-10Ac), a data logger, a data reader, and a personal computer. The personal computer draws a graph of the acceleration of movements (i.e., accelerogram) from the output signals of the acceleration sensors. We then calculated the average acceleration to evaluate leg motions. We drew the accelerograms from 19 young subjects and 36 elderly subjects during the performance of physical fitness activities and walking. Different accelerograms were obtained from two subjects for different walking styles. The average accelerations at the lumbar, ankle and toe points were higher at all axes during movements from the physical fitness activities in the elderly subjects. The accelerations of leg motion at the knee point were, however, lower in the up and down axis in the elderly subjects than in the young subjects, although they were higher in the back and forth and the right and left axes. The new instrument has enabled us to evaluate leg motions by measuring three-dimensional acceleration during the performance of physical fitness activities and walking. The average accelerations of leg motions showed age-related changes. Thus, the average acceleration of leg motions may be used as a new index for evaluating leg motions at the dynamic state.
本研究旨在开发一种新的腿部运动测量系统,使用便携式三维加速度计。测量系统由加速度传感器(Micro Stone,MA3-10Ac)、数据记录仪、数据读取器和个人计算机组成。个人计算机从加速度传感器的输出信号中绘制运动加速度图(即加速度图)。然后,我们计算平均加速度以评估腿部运动。我们在进行健身活动和行走时从 19 名年轻受试者和 36 名老年受试者中绘制了加速度图。对于不同的行走方式,两个受试者的加速度图不同。在老年人的健身活动中,所有轴上的腰部、脚踝和脚趾点的平均加速度都更高。然而,在老年人的上下轴上,膝关节的运动加速度较低,而在前后轴和左右轴上则较高。新仪器使我们能够通过测量健身活动和行走过程中的三维加速度来评估腿部运动。腿部运动的平均加速度显示出与年龄相关的变化。因此,腿部运动的平均加速度可用作评估动态状态下腿部运动的新指标。