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Preliminary Study on the Design of a Low-cost Movement Analysis System Reliability Measurement of Timed Up and Go Test

机译:初步研究设计的低成本运动分析系统可靠性测量定时和试验

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In this paper, we present experiments on the design of a novel movement analysis system for real-time balance assessment in the frail elderly. Using the Microsoft Kinect sensors, we capture TUG (Timed Up and Go) tests and mainly analyze the transfer from sitting-to-standing and back-to-sitting which represent two of the most commonly executed human movements. Nine spatio-temporal parameters were extracted from recorded joint positions by 3D skeletal sequence processing. In order to validate and evaluate the developed system, practical test experiences have been performed on ten healthy young subjects, who were asked to realize the TUG in three different conditions: normal, cognitive and motor. Obtained results showed good measurement reliability and reproducibility with important precision. In addition, we observed that even for young healthy subjects, there is a significant difference of movement parameter between normal condition and cognitive condition, which represents a stimulating result in the dual task paradigm field. This preliminary study opens a new research and development way for geriatric health which implies multiple aspects: user-friendly, hygiene, low-cost, home-based environment, and automatic autonomy assessment.
机译:在本文中,我们对脆弱老年人实时平衡评估进行了设计设计的实验。使用Microsoft Kinect传感器,我们捕获拖船(定时和去)测试,主要分析从坐姿和后坐的转移,代表两个最常见的人类运动。通过3D骨架序列处理从记录的关节位置提取九种时空参数。为了验证和评估发达的系统,已经对十个健康的年轻科目进行了实际测试经验,被要求在三种不同的条件下实现拖船:正常,认知和电机。获得的结果显示出良好的测量可靠性和重现性,具有重要的精度。此外,我们观察到即使对于年轻的健康受试者,即使是正常情况和认知条件之间的运动参数也存在显着差异,这表示双任务范例领域的刺激结果。这项初步研究开辟了对老年健康的新研究和发展方式,这意味着多个方面:用户友好,卫生,低成本,家庭环境和自动自动评估。

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