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首页> 外文期刊>Journal of medical Internet research >Designing, Prototyping and Evaluating Digital Mindfulness Applications: A Case Study of Mindful Breathing for Stress Reduction
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Designing, Prototyping and Evaluating Digital Mindfulness Applications: A Case Study of Mindful Breathing for Stress Reduction

机译:设计,原型设计和评估数码思维应用:一种心灵减少呼吸的案例研究

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Background During the past decade, there has been a rapid increase of interactive apps designed for health and well-being. Yet, little research has been published on developing frameworks for design and evaluation of digital mindfulness facilitating technologies. Moreover, many existing digital mindfulness applications are purely software based. There is room for further exploration and assessment of designs that make more use of physical qualities of artifacts. Objective The study aimed to develop and test a new physical digital mindfulness prototype designed for stress reduction. Methods In this case study, we designed, developed, and evaluated HU, a physical digital mindfulness prototype designed for stress reduction. In the first phase, we used vapor and light to support mindful breathing and invited 25 participants through snowball sampling to test HU. In the second phase, we added sonification. We deployed a package of probes such as photos, diaries, and cards to collect data from users who explored HU in their homes. Thereafter, we evaluated our installation using both self-assessed stress levels and heart rate (HR) and heart rate variability (HRV) measures in a pilot study, in order to measure stress resilience effects. After the experiment, we performed a semistructured interview to reflect on HU and investigate the design of digital mindfulness apps for stress reduction. Results The results of the first phase showed that 22 of 25 participants (88%) claimed vapor and light could be effective ways of promoting mindful breathing. Vapor could potentially support mindful breathing better than light (especially for mindfulness beginners). In addition, a majority of the participants mentioned sound as an alternative medium. In the second phase, we found that participants thought that HU could work well for stress reduction. We compared the effect of silent HU (using light and vapor without sound) and sonified HU on 5 participants. Subjective stress levels were statistically improved with both silent and sonified HU. The mean value of HR using silent HU was significantly lower than resting baseline and sonified HU. The mean value of root mean square of differences (RMSSD) using silent HU was significantly higher than resting baseline. We found that the differences between our objective and subjective assessments were intriguing and prompted us to investigate them further. Conclusions Our evaluation of HU indicated that HU could facilitate relaxed breathing and stress reduction. There was a difference in outcome between the physiological measures of stress and the subjective reports of stress, as well as a large intervariability among study participants. Our conclusion is that the use of stress reduction tools should be customized and that the design work of mindfulness technology for stress reduction is a complex process, which requires cooperation of designers, HCI (Human-Computer Interaction) experts and clinicians.
机译:背景技术在过去十年中,互动应用程序迅速增加,专为健康和福祉而设计。然而,关于开发设计和评估的数字思维促进技术的设计和评估的框架很少。此外,许多现有的数字思想应用纯粹是基于软件。有进一步探索和评估设计的空间,这些设计使伪影的物理素质更多。目的旨在开发和测试设计用于减压的新物理态度原型。方法在这种情况下,我们设计,开发和评估了Hu,设计了用于减压的物理数字思维原型。在第一阶段,我们使用蒸气和光线来支持令人叹为观的呼吸,并通过雪球采样邀请25名参与者进行测试。在第二阶段,我们补充了Sonofication。我们部署了一揽子探针,如照片,日记和卡,以收集来自家庭中胡锦涛的用户的数据。此后,我们在试验研究中使用自评压度水平和心率(HR)和心率变异(HRV)措施来评估我们的安装,以测量应力弹性效应。实验结束后,我们进行了半系统的面试,以反映胡锦涛,调查数码思维应用的设计,减少压力。结果第一阶段的结果表明,22名参与者(88%)所要求保护的蒸汽和光可能是促进呼吸的有效方法。蒸气可能比光(特别是谨慎的初学者)更好地支持一致的呼吸。此外,大多数参与者提到了作为替代媒体的声音。在第二阶段,我们发现参与者认为胡锦涛可以很好地减少压力。我们比较了沉默胡(使用光和蒸汽没有声音)的效果,并在5名参与者上混淆了胡锦涛。沉默和经过迟发的胡人士,主观压力水平统计学化。使用沉默的HU的HR的平均值显着低于休息的基线和Sonyied Hu。使用沉默HU的差异(RMSD)的均方根平方的平均值显着高于休息基线。我们发现,我们的客观和主观评估之间的差异是有趣的,并提示我们进一步调查。结论我们对胡锦涛的评价表明,胡源可以促进缓解呼吸和减少压力。压力的生理措施与强调报告之间存在差异,以及研究参与者之间的巨大安息。我们的结论是,应定制压力减少工具的使用,并为压力减少的谨慎技术设计工作是一种复杂的过程,需要设计师,HCI(人机互动)专家和临床医生的合作。

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