Dijkstra Baukje, Zijlstra Wiebren, Scherder Erik, Kamsma Yvo
University Medical Center Groningen, Center for Human Movement Sciences, University of Groningen, A. Deusinglaan 1, 9700 AD Groningen, The Netherlands.
Age Ageing. 2008 Jul;37(4):436-41. doi: 10.1093/ageing/afn097. Epub 2008 May 16.
The aim of this study was to examine if walking periods and number of steps can accurately be detected by a single small body-fixed device in older adults and patients with Parkinson's disease (PD). Results of an accelerometry-based method (DynaPort MicroMod) and a pedometer (Yamax Digi-Walker SW-200) worn on each hip were evaluated against video observation. Twenty older adults and 32 PD patients walked straight-line trajectories at different speeds, of different lengths and while doing secondary tasks in an indoor hallway. Accuracy of the instruments was expressed as absolute percentage error (older adults versus PD patients). Based on the video observation, a total of 236.8 min of gait duration and 24,713 steps were assessed. The DynaPort method predominantly overestimated gait duration (10.7 versus 11.1%) and underestimated the number of steps (7.4 versus 6.9%). Accuracy decreased significantly as walking distance decreased. Number of steps were also mainly underestimated by the pedometers, the left Yamax (6.8 versus 11.1%) being more accurate than the right Yamax (11.1 versus 16.3%). Step counting of both pedometers was significantly less accurate for short trajectories (3 or 5 m) and as walking pace decreased. It is concluded that the Yamax pedometer can be reliably used for this study population when walking at sufficiently high gait speeds (>1.0 m/s). The accelerometry-based method is less speed-dependent and proved to be more appropriate in the PD patients for walking trajectories of 5 m or more.
本研究的目的是检验单个小型身体固定设备能否准确检测老年人和帕金森病(PD)患者的步行时间和步数。将佩戴在每个髋部的基于加速度计的方法(DynaPort MicroMod)和计步器(Yamax Digi-Walker SW-200)的结果与视频观察结果进行评估。20名老年人和32名PD患者在室内走廊以不同速度、不同长度直线行走,并同时执行次要任务。仪器的准确性用绝对百分比误差表示(老年人与PD患者)。基于视频观察,共评估了236.8分钟的步态持续时间和24713步。DynaPort方法主要高估了步态持续时间(10.7%对11.1%),低估了步数(7.4%对6.9%)。随着步行距离的减少,准确性显著下降。计步器也主要低估了步数,左侧Yamax(6.8%对11.1%)比右侧Yamax(11.1%对16.3%)更准确。对于短轨迹(3米或5米)以及步行速度降低时,两个计步器的步数计数准确性明显降低。结论是,当以足够高的步态速度(>1.0米/秒)行走时,Yamax计步器可可靠地用于该研究人群。基于加速度计的方法对速度的依赖性较小,并且在PD患者中对于5米或更长的步行轨迹被证明更合适。