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Home Monitoring Musculo-skeletal Disorders with a Single 3D Sensor

机译:使用单个3D传感器进行家庭骨骼肌肉疾病监测

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We address the problem of automated quantitative evaluation of musculo-skeletal disorders using a 3D sensor. This enables a non-invasive home monitoring system which extracts and analyzes the subject's motion symptoms and provides clinical feedback. The subject is asked to perform several clinically validated standardized tests (e.g. sit-to-stand, repeated several times) in front of a 3D sensor to generate a sequence of skeletons (i.e. locations of 3D joints). While the complete sequence consists of multiple repeated Skeletal Action Units (SAU) (e.g. sit-to-stand, one repetition), we generate a single robust Representative Skeletal Action Unit (RSAU) which encodes the subject's most consistent spatio-temporal motion pattern. Based on the Representative Skeletal Action Unit (RSAU) we extract a series of clinical measurements (e.g. step size, swing level of hand) which are crucial for prescription and rehabilitation plan design. In this paper, we propose a Temporal Alignment Spatial Summarization (TASS) method to decouple the complex spatio-temporal information of multiple Skeletal Action Units (SAU). Experimental results from people with Parkinson's Disease (PD) and people without Parkinson's Disease (non-PD) demonstrate the effectiveness of our methodology which opens the way for many related applications.
机译:我们解决了使用3D传感器对肌肉骨骼疾病进行自动定量评估的问题。这使非侵入性家庭监控系统成为可能,该系统提取并分析对象的运动症状并提供临床反馈。要求受试者在3D传感器之前执行几项临床验证的标准化测试(例如,从坐到站,重复几次),以生成一系列骨骼(即3D关节的位置)。虽然完整序列由多个重复的骨骼动作单元(SAU)组成(例如,从坐到站,一次重复),但我们生成了一个强大的代表性骨骼动作单元(RSAU),该单元编码了受试者最一致的时空运动模式。根据代表性骨骼行动单位(RSAU),我们提取了一系列临床测量结果(例如步长,手的挥杆水平),这对于处方和康复计划设计至关重要。在本文中,我们提出了一种时间对齐空间摘要(TASS)方法,以解耦多个骨骼动作单元(SAU)的复杂时空信息。患有帕金森氏病(PD)的人和没有帕金森氏病(非PD)的人的实验结果证明了我们方法的有效性,这为许多相关应用开辟了道路。

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