Hayashibe Mitsuhiro, Gonzalez Alejandro, Tournier Maxime
Annu Int Conf IEEE Eng Med Biol Soc. 2020 Jul;2020:4863-4866. doi: 10.1109/EMBC44109.2020.9175330.
When we face a super-aging society, there is a drastically increased need for efficient systems in terms of time and cost that can improve rehabilitation standards for the elderly people and other motor-impaired subjects. Human balance ability depends largely on the control of the full body center of mass (CoM), fall risks can be evaluated by estimating the subject-specific CoM displacement over the support polygon relating to the foot tracking. The CoM position is often estimated using what are known as anthropometric tables in biomechanics field. However, the parameters have been obtained from a standard population and will differ between subjects. Current existing fall risk assessment usually relies on the generic anthropometric table or need the center of pressure (CoP) recordings which are to be evaluated for the risk of fall. CoP measurements require force platform, wii board or specialized shoes, which limits the practical usage in the daily life environment. This work represents a personalized measure of balance that considers subject-specific body mass variations along with the motion tracking by Kinect Two. Based on our previous developments, we firstly verified the system with Kinect Two recording, and with adaptive support polygon extraction process, it realizes a real-time system for evaluating the personalized balance and fall risk visualization for unknown disturbance without needing force platform.
当我们面对超老龄化社会时,在时间和成本方面,对高效系统的需求急剧增加,这些系统能够提高老年人及其他运动功能受损者的康复标准。人体平衡能力很大程度上取决于全身质心(CoM)的控制,通过估计与足部轨迹相关的支撑多边形上特定个体的CoM位移,可以评估跌倒风险。在生物力学领域,CoM位置通常使用所谓的人体测量表来估计。然而,这些参数是从标准人群中获得的,不同个体之间会有所差异。当前现有的跌倒风险评估通常依赖通用人体测量表,或者需要评估用于跌倒风险的压力中心(CoP)记录。CoP测量需要力平台、Wii平衡板或专用鞋子,这限制了其在日常生活环境中的实际应用。这项工作提出了一种个性化的平衡测量方法,该方法考虑了特定个体的体重变化以及通过Kinect Two进行的运动跟踪。基于我们之前的研究成果,我们首先使用Kinect Two记录对系统进行了验证,通过自适应支撑多边形提取过程,实现了一个无需力平台即可实时评估个性化平衡和未知干扰下跌倒风险可视化的系统。