生物节律和技术

M. Matthews, Erin H. C. Carroll, Saeed Abdullah, Jaime Snyder, Matthew Kay, Tanzeem Choudhury, Geri Gay, J. Kientz
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引用次数: 3

摘要

生物节律使生物体能够适应和生活在周期性的环境变化中,例如地球和太阳相对位置的变化。内部节律,如体温和睡眠-觉醒周期,是由许多生物过程驱动的,即使在没有外部环境提示的情况下也能维持。这些节奏影响着我们的感觉、思考和行动。它们对我们的健康、睡眠质量和情绪都非常重要。然而,我们使用的数字设备对我们的生物学一无所知。它们对我们的触摸和点击做出一致的反应。最近,在HCI社区中,支持行为改变、个人洞察力和提高生产力的研究有了相当大的增长。本次研讨会将汇集睡眠、健康和昼夜节律方面的研究人员,讨论节律系统的可能性:发挥我们生物学优势的技术。它将研究人工智能如何补充我们的生物节律,并将重点放在两个领域:测量和干预。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biological rhythms and technology
Biological rhythms enable living organisms to adapt and live with periodical environmental changes, such as variation in the relative position of the earth and the sun. Internal rhythms, like body temperature and sleep-wake cycle, are driven by numerous biological processes and can be maintained even in the absence of external environmental cues. These rhythms affect how we feel, think, and act. They are profoundly important for our health, quality of sleep, and mood. Yet the digital devices we use are ignorant of our biology. They respond uniformly to our touch and click. Recently there has been a considerable increase of research within the HCI community to support behavior change, personal insight, and increase productivity. This workshop will bring together researchers in sleep, wellbeing, and circadian rhythms to discuss the possibility of rhythm systems: technologies that play to the strengths of our biology. It will investigate how HCI can complement our biological rhythms and will focus on two areas: measurement and intervention.
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