Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology and Emory University, Atlanta, GA, United States.
Gait Posture. 2014 Jan;39(1):224-8. doi: 10.1016/j.gaitpost.2013.07.010. Epub 2013 Aug 2.
The Nintendo Wii Balance Board (WBB) is increasingly used as an inexpensive force plate for assessment of postural control; however, no documentation of force and COP accuracy and reliability is publicly available. Therefore, we performed a standard measurement uncertainty analysis on 3 lightly and 6 heavily used WBBs to provide future users with information about the repeatability and accuracy of the WBB force and COP measurements. Across WBBs, we found the total uncertainty of force measurements to be within ± 9.1N, and of COP location within ± 4.1mm. However, repeatability of a single measurement within a board was better (4.5 N, 1.5mm), suggesting that the WBB is best used for relative measures using the same device, rather than absolute measurement across devices. Internally stored calibration values were comparable to those determined experimentally. Further, heavy wear did not significantly degrade performance. In combination with prior evaluation of WBB performance and published standards for measuring human balance, our study provides necessary information to evaluate the use of the WBB for analysis of human balance control. We suggest the WBB may be useful for low-resolution measurements, but should not be considered as a replacement for laboratory-grade force plates.
任天堂 Wii 平衡板(WBB)作为一种廉价的力量板,越来越多地用于评估姿势控制;然而,目前还没有关于其力量和 COP 准确性和可靠性的公开文档。因此,我们对 3 个轻度使用和 6 个重度使用的 WBB 进行了标准测量不确定度分析,为未来的用户提供有关 WBB 力量和 COP 测量重复性和准确性的信息。在 WBB 之间,我们发现力测量的总不确定度在±9.1N 以内,COP 位置的不确定度在±4.1mm 以内。然而,单个板子内的单次测量的重复性更好(4.5N,1.5mm),这表明 WBB 最适合使用相同设备进行相对测量,而不是在不同设备之间进行绝对测量。内部存储的校准值与实验确定的值相当。此外,重度磨损并没有显著降低性能。结合之前对 WBB 性能的评估和用于测量人体平衡的已发表标准,我们的研究提供了评估 WBB 用于分析人体平衡控制的必要信息。我们认为 WBB 可能对低分辨率的测量有用,但不应被视为实验室级力量板的替代品。