May David S, Tueth Lauren E, Earhart Gammon M, Mazzoni Pietro
Program in Physical Therapy, Washington University School of Medicine, St. Louis, MO 63108, USA.
Department of Neurology, Washington University School of Medicine, St. Louis, MO 63110, USA.
Bioengineering (Basel). 2023 Feb 23;10(3):289. doi: 10.3390/bioengineering10030289.
Freezing of gait (FOG) is a debilitating symptom of Parkinson's disease (PD) that remains difficult to assess. Wearable movement sensors and associated algorithms can be used to quantify FOG in laboratory settings, but the utility of such methods for real world use is unclear. We aimed to determine the suitability of our wearable sensor-based FOG assessment method for real world use by assessing its performance during in-clinic simulated real world activities. Accuracy of the sensor-based method during simulated real-world tasks was calculated using expert rated video as the gold standard. To determine feasibility for unsupervised home use, we also determined correlations between the percent of active time spent freezing (%ATSF) during unsupervised home use and in-clinic activities. Nineteen people with PD and FOG participated in this study. Results from our sensor-based method demonstrated an accuracy above 90% compared to gold-standard expert review during simulated real-world tasks. Additionally, %ATSF from our sensor-based method during unsupervised home use correlated strongly with %ATSF from our sensor-based method during in-clinic simulated real-world activities (ρ = 0.73). Accuracy values and correlation patterns suggest our method may be useful for FOG assessment in the real world.
冻结步态(FOG)是帕金森病(PD)的一种使人衰弱的症状,仍然难以评估。可穿戴运动传感器及相关算法可用于在实验室环境中量化冻结步态,但此类方法在实际应用中的效用尚不清楚。我们旨在通过评估基于可穿戴传感器的冻结步态评估方法在临床模拟真实世界活动中的表现,来确定其在实际应用中的适用性。以专家评级视频作为金标准,计算基于传感器的方法在模拟真实世界任务中的准确性。为了确定无监督家庭使用的可行性,我们还确定了无监督家庭使用期间的冻结活动时间百分比(%ATSF)与临床活动之间的相关性。19名患有冻结步态的帕金森病患者参与了本研究。在模拟真实世界任务中,与金标准专家评审相比,我们基于传感器的方法的结果显示准确率高于90%。此外,在无监督家庭使用期间,我们基于传感器的方法得出的%ATSF与在临床模拟真实世界活动中基于传感器的方法得出的%ATSF高度相关(ρ = 0.73)。准确率值和相关模式表明我们的方法可能对实际应用中的冻结步态评估有用。