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Using Internet of Things to Reduce Office Workers’ Sedentary Behavior: Intervention Development Applying the Behavior Change Wheel and Human-Centered Design Approach

机译:使用互联网来减少办公室工作人员的久坐行为:采用行为改变轮和以人为本的设计方法的干预开发

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Background Sedentary behavior (SB) is associated with various adverse health outcomes. The prevalence of prolonged sitting at work among office workers makes a case for SB interventions to target this setting and population. Everyday mundane objects with embedded microelectronics and ubiquitous computing represent a novel mode of delivering health behavior change interventions enabled by internet of things (IoTs). However, little is known about how to develop interventions involving IoT technologies. Objective This paper reports the design and development of an IoT-enabled SB intervention targeting office workers. Methods The process was guided by the behavior change wheel (BCW), a systematic framework for theory-informed and evidence-based development of behavior change interventions, complemented by the human-centered design (HCD) approach. Intervention design was shaped by findings from a diary-probed interview study (n=20), a stakeholder design workshop (n=8), and a series of theoretical mapping and collaborative technical design activities. Results The resulting intervention named WorkMyWay targets a reduction in office workers’ prolonged stationary behaviors at work and an increase in regular breaks by modifying behavioral determinants in 11 theoretical domains with 17 behavior change techniques. The delivery technology consists of a wearable activity tracker, a light-emitting diode reminder device attached to a vessel (ie, water bottle or cup), and a companion Android app connected to both devices over Bluetooth. The delivery plan consists of a 2-week baseline assessment, a 30-min face-to-face action planning session, and 6-week self-directed use of the delivery technology. Conclusions This is the first study to demonstrate that it is possible to develop a complex IoT-enabled intervention by applying a combination of the BCW and HCD approaches. The next step is to assess the feasibility of WorkMyWay prior to testing intervention efficacy in a full-scale trial. The intervention mapping table that links individual intervention components with hypothesized mechanisms of action can serve as the basis for testing and clarifying theory-based mechanisms of action in future studies on WorkMyWay .
机译:背景久坐不动行(SB)与各种不利健康结果有关。办公室工作人员长期坐在工作中的普遍存在案例是针对靶向这一环境和人口的SB干预措施。嵌入式微电子和无处不在的计算的日常平凡的物体代表了一种新颖的方式,提供了物联网(物联网)所启用的健康行为改变干预措施。但是,众所周知,如何开发涉及物联网技术的干预措施。目的本文报告了针对办公室工作人员的启用物联网的SB干预的设计和开发。方法该过程由行为改变轮(BCW),是一个系统框架的系统框架,用于行为改变干预的行为变化干预,由人以人为本(HCD)方法相辅相成。干预设计由日记探测访谈研究(n = 20),利益相关者设计研讨会(n = 8)以及一系列理论绘图和协作技术设计活动的调查结果。结果所产生的干预名为Workmyway的工作人员在工作中减少了办公室工作人员的延长的静止行为,并通过在具有17个行为改变技术的11个理论域内改变行为决定因素来进行定期休息。递送技术由可穿戴活动跟踪器组成,一个发光二极管提醒装置连接到船只(即水瓶或杯子),以及连接到两个设备上的伴侣Android应用程序通过蓝牙。交付计划包括为期2周的基线评估,一个30分钟的面对面行动规划会议,以及为期6周的交付技术的自我指导使用。结论这是第一项研究表明,通过应用BCW和HCD方法的组合可以开发复杂的IoT的干预。下一步是在全规模试验中测试干预效率之前评估工作Myway的可行性。利用假设动作机制链接各个干预组件的干预映射表可以作为测试和澄清基于理论的行动机制的基础,以便在Workmyway的研究中。

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