Department of Rehabilitation, Hiroshima International University, Hiroshima, Japan.
System Friend Inc., Hiroshima, Japan.
Med Eng Phys. 2019 Apr;66:91-95. doi: 10.1016/j.medengphy.2018.12.020. Epub 2019 Feb 21.
In order to evaluate the movement strategy in sit-to-stand (STS) motion, it is necessary to measure the center of gravity (COG). However, there is no established method for enabling this using convenience device in the clinical setting. The purpose of this study was to validate the measurement of the COG during the STS motion using an inexpensive, portable and markerless motion capture system (MLS).
Eighteen healthy adults participated in our study. The coordinates of the joint centers during the STS motion were collected using the Microsoft Kinect system (as a MLS) and the Vicon system (as a marker-based motion capture system [MBS]). The center of mass of each segment-which was calculated based on the segmental mass and length-were synthesized to calculate the COG. The displacement, velocity, acceleration of the COG during the STS motion were calculated from the data obtained using each system and compared between systems.
The two systems showed significant difference in their measurements of displacement in both the vertical and anteroposterior directions. However, in the anteroposterior direction, there was no significant difference in the measurements of either velocity or acceleration.
Our results suggested the validity of the COG in the anteroposterior direction during the STS motion measured using the MLS. The method developed in the present study enables the evaluation of a patient's movement strategy.
为了评估坐站(STS)运动中的运动策略,有必要测量重心(COG)。然而,在临床环境中,使用方便的设备来实现这一点还没有建立的方法。本研究的目的是验证使用廉价、便携式无标记运动捕捉系统(MLS)测量 STS 运动中的 COG。
18 名健康成年人参与了我们的研究。使用 Microsoft Kinect 系统(作为 MLS)和 Vicon 系统(作为基于标记的运动捕捉系统 [MBS])收集 STS 运动过程中关节中心的坐标。根据各节段的质量和长度计算各节段的质心,并合成计算 COG。从每个系统获得的数据中计算 STS 运动过程中 COG 的位移、速度和加速度,并在系统之间进行比较。
两个系统在垂直和前后方向的位移测量上均显示出显著差异。然而,在前后方向上,速度或加速度的测量没有显著差异。
我们的结果表明,使用 MLS 测量 STS 运动中 COG 在前后方向上是有效的。本研究中开发的方法可以评估患者的运动策略。