University of Groningen, University Medical Center Groningen, Department of Rehabilitation Medicine, Hanzeplein 1, 9713 GZ Groningen, The Netherlands; INCAS(3), Dr. Nassaulaan 9, 9401 HJ Assen, The Netherlands.
INCAS(3), Dr. Nassaulaan 9, 9401 HJ Assen, The Netherlands.
Appl Ergon. 2017 Nov;65:355-361. doi: 10.1016/j.apergo.2017.07.012. Epub 2017 Jul 31.
Prolonged sitting can cause health problems and musculoskeletal discomfort. There is a need for objective and non-obstructive means of measuring sitting behavior. A 'smart' office chair can monitor sitting behavior and provide tactile feedback, aiming to improve sitting behavior. This study aimed to investigate the effect of the feedback signal on sitting behavior and musculoskeletal discomfort. In a 12-week prospective cohort study (ABCB design) among office workers (n = 45) was measured sitting duration and posture, feedback signals and musculoskeletal discomfort. Between the study phases, small changes were observed in mean sitting duration, posture and discomfort. After turning off the feedback signal, a slight increase in sitting duration was observed (10 min, p = 0.04), a slight decrease in optimally supported posture (2.8%, p < 0.01), and musculoskeletal discomfort (0.8, p < 0.01) was observed. We conclude that the 'smart' chair is able to monitor the sitting behavior, the feedback signal, however, led to small or insignificant changes.
长时间坐着会导致健康问题和肌肉骨骼不适。因此,需要一种客观且非阻碍的方法来测量坐姿行为。一种“智能”办公椅可以监测坐姿行为并提供触觉反馈,旨在改善坐姿行为。本研究旨在调查反馈信号对坐姿行为和肌肉骨骼不适的影响。在一项针对办公室工作人员(n=45)的 12 周前瞻性队列研究(ABCB 设计)中,测量了坐姿持续时间、姿势、反馈信号和肌肉骨骼不适。在研究阶段之间,平均坐姿持续时间、姿势和不适有较小的变化。关闭反馈信号后,坐姿持续时间略有增加(10 分钟,p=0.04),最佳支撑姿势略有下降(2.8%,p<0.01),肌肉骨骼不适也略有增加(0.8,p<0.01)。我们得出结论,“智能”椅子能够监测坐姿行为,但反馈信号仅导致微小或无意义的变化。