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Quantifying postural instability in Parkinsonian gait from inertial sensor data during standardised clinical gait tests

机译:在标准化的临床步态测试过程中,通过惯性传感器数据量化帕金森步态中的姿势不稳定性

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Quantifying dynamic postural stability from inertial sensor data is clinically very relevant for treatment and therapy monitoring in neuromuscular diseases, e.g. Parkinson's disease (PD). We extract peak accelerations in movement direction during the loading phase and in vertical direction at ground contact from gravity-free acceleration signals captured at the patient's feet as novel markers of dynamic postural stability. The approach is tested on a dataset containing 100 idiopathic PD patients and 50 age- and weight-matched healthy controls. Experiments include group separation of the controls and PD patients with/without postural instability as assessed by the pull test and analysis of correlations to existing parameters from inertial sensor data. Both markers show significant clinical differences, specifically between the two conditions in the PD group. At least one parameter provides complementary information to the existing set of spatio-temporal gait parameters while the other one correlates highly to gait velocity but might be measurable more precisely. In conclusion, the inertial sensor derived markers can detect postural instability but further research in this domain is needed.
机译:从惯性传感器数据量化动态姿势稳定性在临床上与神经肌肉疾病(例如神经肌肉疾病)的治疗和治疗监测非常相关。帕金森氏病(PD)。我们从在患者脚部捕获的无重力加速度信号中提取了加载阶段在运动方向和地面接触时在垂直方向上的峰值加速度,将其作为动态姿势稳定性的新标记。该方法在包含100位特发性PD患者以及50位年龄和体重匹配的健康对照的数据集上进行了测试。实验包括对照组和PD患者的组分离(通过拉力测试评估是否具有姿势不稳定性)以及从惯性传感器数据中分析与现有参数的相关性。两种标记物均显示出显着的临床差异,特别是在PD组的两种疾病之间。至少一个参数为现有的时空步态参数集提供补充信息,而另一个参数与步态速度高度相关,但可以更精确地测量。总之,惯性传感器衍生的标记物可以检测姿势不稳定性,但需要在这一领域进行进一步的研究。

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