Department of Engineering, University of Roma Tre, Via Vito Volterra, 62, 00146 Rome, Italy.
Sensors (Basel). 2019 Jan 22;19(3):455. doi: 10.3390/s19030455.
An office chair for analyzing the seated posture variation during the performance of a stress-level test is presented in this work. To meet this aim, we placed a set of textile pressure sensors both on the backrest and on the seat of the chair. The position of the sensors was selected for maximizing the detection of variations of user's posture. The effectiveness of the designed system was evaluated through an experiment where increasing stress levels were obtained by administering a Stroop test. The collected results had been analyzed by considering three different time intervals based on the difficulty level of the test (low, medium, and high). A transition analysis conducted on postures assumed during the test showed that participants reached a different posture at the end of the test, when the cognitive engagement increased, with respect to the beginning. This evidence highlighted the presence of movement presumably due to the increased cognitive engagement. Overall, the performed analysis showed the proposed monitoring system could be used to identify body posture variations related to different levels of engagement of a seated user while performing cognitive tasks.
本文提出了一种用于分析坐姿变化的办公椅,以满足这一目标,我们在椅子的靠背和座位上放置了一组纺织压力传感器。传感器的位置选择是为了最大限度地检测用户姿势的变化。通过施测斯特鲁普测试来增加压力水平的实验评估了设计系统的有效性。收集的结果根据测试的难度级别(低、中、高)分为三个不同的时间间隔进行分析。对测试过程中所采用的姿势进行的转换分析表明,参与者在认知负荷增加的情况下,在测试结束时达到了与开始时不同的姿势。这一证据表明存在运动,可能是由于认知负荷增加所致。总的来说,所进行的分析表明,所提出的监测系统可用于识别在执行认知任务时,坐姿使用者不同投入水平相关的身体姿势变化。