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Validation of an Accelerometer to Quantify a Comprehensive Battery of Gait Characteristics in Healthy Older Adults and Parkinson's Disease: Toward Clinical and at Home Use

机译:验证加速度计以量化健康的老年人和帕金森氏病的综合步态特征:走向临床和家庭使用

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Measurement of gait is becoming important as a tool to identify disease and disease progression, yet to date its application is limited largely to specialist centers. Wearable devices enables gait to be measured in naturalistic environments, however questions remain regarding validity. Previous research suggests that when compared with a laboratory reference, measurement accuracy is acceptable for mean but not variability or asymmetry gait characteristics. Some fundamental reasons for this have been presented, (e.g., synchronization, different sampling frequencies) but to date this has not been systematically examined. The aims of this study were to: 1) quantify a comprehensive range of gait characteristics measured using a single triaxial accelerometer-based monitor; 2) examine outcomes and monitor performance in measuring gait in older adults and those with Parkinson's disease (PD); and 3) carry out a detailed comparison with those derived from an instrumented walkway to account for any discrepancies. Fourteen gait characteristics were quantified in 30 people with incident PD and 30 healthy age-matched controls. Of the 14 gait characteristics compared, agreement between instruments was excellent for four (ICCs 0.913–0.983); moderate for four (ICCs 0.508–0.766); and poor for six characteristics (ICCs 0.637–0.370). Further analysis revealed that differences reflect an increased sensitivity of accelerometry to detect motion, rather than measurement error. This is most likely because accelerometry measures gait as a continuous activity rather than discrete footfall events, per instrumented tools. The increased sensitivity shown for these characteristics will be of particular interest to researchers keen to interpret “real-world” gait data. In conclusion, use of a body-worn monitor is recommended for the measurement of gait but is likely to yield more sensitive data for asymmetry and variability features.
机译:步态测量作为识别疾病和疾病进展的一种工具正变得越来越重要,但迄今为止,它的应用在很大程度上仅限于专科中心。穿戴式设备可以在自然环境中测量步态,但是仍然存在有效性方面的疑问。先前的研究表明,与实验室参考相比,测量准确度对于均值是可以接受的,但对变异性或不对称步态特征却不可接受。已经提出了造成这种情况的一些根本原因(例如,同步,不同的采样频率),但是迄今为止尚未对此进行系统地检查。这项研究的目的是:1)量化使用单个基于三轴加速度计的监视器测得的步态特征的综合范围; 2)检查结果并监测测量老年人和帕金森氏病(PD)步态的性能;和3)与从人行通道中得出的结果进行详细比较,以解决任何差异。在30名发生PD的患者和30名年龄匹配的健康对照者中,定量了14种步态特征。在比较的14个步态特征中,四个器械之间的一致性极好(ICC为0.913-0.983)。中度四个(ICC 0.508-0.766);较差的六个特征(ICC为0.637-0.370)。进一步的分析表明,差异反映了加速度计检测运动而不是测量误差的灵敏度提高了。这是最有可能的,因为对于每个仪器而言,加速度计将步态作为连续活动而不是离散的脚步事件进行测量。对于那些热衷于解释“真实世界”步态数据的研究人员而言,对于这些特征显示出的更高的灵敏度将特别感兴趣。总之,建议使用穿戴式监护仪来进行步态测量,但对于不对称和可变性特征,可能会产生更敏感的数据。

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