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A wearable setup for auditory cued gait analysis in patients with Parkinson's Disease

机译:用于帕金森氏病患者的听觉步态分析的可穿戴装置

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Gait disorders are a primary consequence of Parkinson's Disease (PD), resulting in loss of patients' independence. Recently, Rhythmical Auditory Stimulation (RAS) gave a preliminary proof to benefit gait quality, but the specific methodology requires a long walkway, preventing the use of a traditional complete gait analysis. In the present work we describe an unobtrusive, wearable setup and the related biomechanical model developed for analyzing gait of people with PD during the administration of RAS. One healthy subject was enrolled in the experimental session to validate the estimation of the spatial gait parameters provided by the proposed setup, against an optoelectronic system. Three PD patients were then enrolled to test the setup feasibility in evaluating gait parameters typically adopted in these type of studies. Results related to the validation of the spatial parameter estimation showed a high accuracy of the system in the estimation of the stride length. Preliminary tests on PD patients provided encouraging insights on the wearable setup usability and versatility. Future experimental validation on a larger population will be conducted to fully validate the setup, which opens the way for conducting RAS studies also outside the laboratory environment.
机译:步态障碍是帕金森氏病(PD)的主要后果,导致患者失去独立性。最近,节奏听觉刺激(RAS)为步态质量的提高提供了初步的证据,但是特定的方法需要漫长的步伐,无法使用传统的完整步态分析。在当前的工作中,我们描述了一种不显眼的,可穿戴的设置以及开发的相关生物力学模型,用于分析RAS管理期间PD患者的步态。一名健康受试者参加了实验会议,以针对光电系统验证由建议的装置提供的空间步态参数的估计。然后招募了三名PD患者,以测试在评估这类研究中通常采用的步态参数时的可行性。与空间参数估计的验证有关的结果表明,该系统在步幅估计中具有很高的准确性。对PD患者的初步测试为可穿戴设备的可用性和多功能性提供了令人鼓舞的见解。未来将在更大的人群上进行实验验证,以完全验证该设置,这也为在实验室环境之外进行RAS研究开辟了道路。

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