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Model-Based Posturographic Sleepiness Monitor Tested on 20 Subjects

机译:基于模型的后速睡眠监视器在20个科目上进行了测试

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A previous posturographic force platform study verified that human balance deteriorates as a function of time awake (TA) [1, 2]. It found that TA can be estimated with ±2.5 h accuracy using 30s trial length. For a fast, reliable and convenient sleepiness monitor even better TA estimation accuracy and shorter trial length is needed. We continued this quest by modeling the quiet stance test situation with a single-link inverted pendulum model (SLIPM). The center-of-mass (COM) trace in the AP (anterior-posterior) direction was calculated from the measured center-of-pressure (COP) trace. The sway angle 9, ankle torque t and the horizontal force F acting on the COM were calculated from the SLIP equations -each analyzed with 13 different sway measures, i.e. variables that correlate with TA. The effect of circadian rhythm was separated from the sway measures. Twenty subjects' sway measures were analyzed. The SLIPM-based posturographic averaged TA estimation accuracy improved to ±2.3h. The trial length could be shortened to 21s.
机译:以前的后留力平台研究证实,人平衡随着时间的函数而劣化(TA)[1,2]。它发现,可以使用30S试验长度估计TA以±2.5小时的精度估计。为了快速,可靠,方便的睡眠监测,即使需要更好的TA估计精度和更短的试验长度。我们通过使用单链路倒立摆模型(SLIPM)来建立安静立场测试情况来继续进行这种任务。 AP(前后)方向中的质量中心(COM)迹线由测量的压力中心(COP)迹线计算。摇摆角9,踝部扭矩T和作用在COM上的水平力F从滑移方程计算 - 用13种不同的摇动测量分析,即与TA相关的变量。昼夜节律的影响与摇摆措施分开。分析了20个受试者的摇摆措施。基于滑动的后脉冲平均TA估计精度改善为±2.3h。试验长度可以缩短为21秒。

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