Lee Joey A, Williams Skip M, Brown Dale D, Laurson Kelly R
a School of Kinesiology and Recreation, Illinois State University , Normal , IL , USA.
J Sports Sci. 2015;33(10):991-1000. doi: 10.1080/02640414.2014.981848. Epub 2014 Dec 17.
Activity monitors are frequently used to assess activity in many settings. But as technology advances, so do the mechanisms used to estimate activity causing a continuous need to validate newly developed monitors. The purpose of this study was to examine the step count validity of the Yamax Digiwalker SW-701 pedometer (YX), Omron HJ-720 T pedometer (OP), Polar Active accelerometer (PAC) and Actigraph gt3x+ accelerometer (AG) under controlled and free-living conditions. Participants completed five stages of treadmill walking (n = 43) and a subset of these completed a 3-day free-living wear period (n = 37). Manually counted (MC) steps provided a criterion measure for treadmill walking, whereas the comparative measure during free-living was the YX. During treadmill walking, the OP was the most accurate monitor across all speeds (±1.1% of MC steps), while the PAC underestimated steps by 6.7-16.0% per stage. During free-living, the OP and AG counted 97.5% and 98.5% of YX steps, respectively. The PAC overestimated steps by 44.0%, or 5,265 steps per day. The Omron pedometer seems to provide the most reliable and valid estimate of steps taken, as it was the best performer under lab-based conditions and provided comparable results to the YX in free-living. Future studies should consider these monitors in additional populations and settings.
活动监测器在许多环境中经常被用于评估活动情况。但随着技术的进步,用于估计活动的机制也在不断发展,这就导致需要持续验证新开发的监测器。本研究的目的是在受控和自由生活条件下,检验Yamax Digiwalker SW - 701计步器(YX)、欧姆龙HJ - 720T计步器(OP)、博能Active加速度计(PAC)和Actigraph gt3x +加速度计(AG)的步数计数有效性。参与者完成了五个阶段的跑步机行走(n = 43),其中一部分人还完成了为期3天的自由生活佩戴期(n = 37)。人工计数(MC)的步数为跑步机行走提供了标准测量,而自由生活期间的比较测量对象是YX。在跑步机行走过程中,OP在所有速度下都是最准确的监测器(误差在MC步数的±1.1%以内),而PAC在每个阶段低估步数6.7 - 16.0%。在自由生活期间,OP和AG分别计得YX步数的97.5%和98.5%。PAC高估步数44.0%,即每天高估5265步。欧姆龙计步器似乎能提供最可靠和有效的步数估计,因为它在基于实验室的条件下表现最佳,并且在自由生活中与YX的结果相当。未来的研究应在更多人群和环境中考虑这些监测器。