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从佩戴在腕部的 ActiGraph 加速度计在自由生活的成年人中确定活动强度的切点的开发。

Development of cut-points for determining activity intensity from a wrist-worn ActiGraph accelerometer in free-living adults.

机构信息

Clinical Exercise Physiology Program, Ball State University , Muncie, IN, USA.

Integrative Physiology and Health Science Department, Alma College , Alma, MI, USA.

出版信息

J Sports Sci. 2020 Nov;38(22):2569-2578. doi: 10.1080/02640414.2020.1794244. Epub 2020 Jul 17.

Abstract

Despite recent popularity of wrist-worn accelerometers for assessing free-living physical behaviours, there is a lack of user-friendly methods to characterize physical activity from a wrist-worn ActiGraph accelerometer. Participants in this study completed a laboratory protocol and/or 3-8 hours of directly observed free-living (criterion measure of activity intensity) while wearing ActiGraph GT9X Link accelerometers on the right hip and non-dominant wrist. All laboratory data (n = 36) and 11 participants' free-living data were used to develop vector magnitude count cut-points (counts/min) for activity intensity for the wrist-worn accelerometer, and 12 participants' free-living data were used to cross-validate cut-point accuracy. The cut-points were: <2,860 counts/min (sedentary); 2,860-3,940 counts/min (light); and ≥3,941counts/min (moderate-to-vigorous (MVPA)). These cut-points had an accuracy of 70.8% for assessing free-living activity intensity, whereas Sasaki/Freedson cut-points for the hip accelerometer had an accuracy of 77.1%, and Hildebrand Euclidean Norm Minus One (ENMO) cut-points for the wrist accelerometer had an accuracy of 75.2%. While accuracy was higher for a hip-worn accelerometer and for ENMO wrist cut-points, the high wear compliance of wrist accelerometers shown in past work and the ease of use of count-based analysis methods may justify use of these developed cut-points until more accurate, equally usable methods can be developed.

摘要

尽管腕戴式加速度计在评估自由生活身体行为方面最近越来越受欢迎,但缺乏用户友好的方法来从腕戴式 ActiGraph 加速度计特征化身体活动。本研究的参与者完成了实验室方案和/或 3-8 小时的直接观察自由生活(活动强度的标准测量),同时在右髋部和非优势手腕上佩戴 ActiGraph GT9X Link 加速度计。所有实验室数据(n=36)和 11 名参与者的自由生活数据用于为腕戴式加速度计开发向量幅度计数切点(计数/分钟)以用于活动强度,并且使用 12 名参与者的自由生活数据来交叉验证切点准确性。切点为:<2,860 计数/分钟(久坐);2,860-3,940 计数/分钟(轻);和≥3,941 计数/分钟(中度到剧烈(MVPA))。这些切点用于评估自由生活活动强度的准确性为 70.8%,而髋部加速度计的 Sasaki/Freedson 切点的准确性为 77.1%,腕部加速度计的 Hildebrand 欧几里得范数减一(ENMO)切点的准确性为 75.2%。虽然髋部佩戴式加速度计和 ENMO 腕部切点的准确性更高,但过去研究中腕戴式加速度计的高佩戴依从性和基于计数的分析方法的易用性可能证明使用这些开发的切点是合理的,直到可以开发出更准确、同样可用的方法。

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