首页> 外文期刊>Computer methods in biomechanics and biomedical engineering >Gyroscopic corrections improve wearable sensor data prior to measuring dynamic sway in the gait of people with Multiple Sclerosis
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Gyroscopic corrections improve wearable sensor data prior to measuring dynamic sway in the gait of people with Multiple Sclerosis

机译:在测量多发性硬化症患者的步态中的动态摇摆之前,陀螺仪校正可改善可穿戴传感器的数据

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Accelerometers are incorporated into many consumer devices providing new ways to monitor gait, mobility, and fall risk. However, many health benefits have not been realised because of issues with data quality that results from gravitational cross-talk' when the wearable device is tilted. Here we present an adaptive filter designed to improve the quality of accelerometer data prior to measuring dynamic pelvic sway patterns during a six minute walk test in people with and without Multiple Sclerosis (MS). Optical motion capture was used as the gold standard. Improved wearable device accuracy (4.4% NRMSE) was achieved using gyroscopic corrections and scaling filter thresholds by step frequency. The people with MS presented significantly greater pelvis sway range to compensate for their lower limb weaknesses and joint contractures. The visualisation of asymmetric pelvic sway in people with MS illustrates the potential to better understand their mobility impairments for reducing fall risk.
机译:加速度计已集成到许多消费类设备中,从而提供了监视步态,活动性和跌倒风险的新方法。但是,由于可穿戴设备倾斜时由于重力串扰导致的数据质量问题,因此尚未实现许多健康益处。在这里,我们介绍了一种自适应滤波器,旨在在有或没有多发性硬化症(MS)的人进行六分钟步行测试期间测量动态骨盆摇摆模式之前,先提高加速度计数据的质量。光学运动捕捉被用作黄金标准。使用陀螺仪校正和按阶跃频率缩放滤波器阈值可以提高可穿戴设备的精度(4.4%NRMSE)。患有MS的人的骨盆摇摆范围更大,可以弥补他们的下肢无力和关节挛缩。 MS患者骨盆不对称摇摆的可视化显示了更好地了解其行动能力障碍以降低跌倒风险的潜力。

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