Dynamic Compression in Affective Haptics

Dynamic Compression in Affective Haptics
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情感触觉中的动态压缩

DOI:
10.1145/3267305.3267312
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发表时间:
2018
期刊:
UbiComp '18 Proceedings of the 2018 ACM International Joint Conference and 2018 International Symposium on Pervasive and Ubiquitous Computing and Wearable Computers
影响因子:
--
通讯作者:
Holschuh, Brad
Holschuh, Brad
中科院分区:
--
文献类型:
--
作者:
Foo, Esther;Holschuh, Brad

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触觉通过机械、热、化学或电刺激对皮肤的刺激,是感知和表征现实的重要方式。各种各样的感觉可以被激发出来,比如温度、振动、压力、敲击和疼痛。其中一种感觉是counterǦpressure,或压缩。压缩是一种无处不在的感觉;从感受到脚底的压力,到穿着formǦϐitted的衣服,或者接受一个拥抱。它还用于与人体健康有关的各种应用,例如用于改善血液循环的分级长袜和承受高加速度力的宇航员所穿的antiǦgravity套装。此外,诸如加重背心、按摩疗法和婴儿襁褓等干预措施,都可以通过使用压缩来积极影响用户的健康和情绪beneϐit。这样的应用已经看到beneϐits的strategicallyǦapplied压缩通过减少焦虑,促进感觉平静和提高警觉性[1]Ȃ[4]。尽管触觉是所有动物中发展起来的ϐirst感觉系统,而皮肤是最大的感觉器官,但包括挤压在内的触觉体验还远远没有得到充分的研究。最近在这一领域的工作表明,一种新型garmentǦbased动态压缩技术的发展,能够对身体产生computerǦ介导的压缩效应,这一进步使得推动这一研究领域向前发展成为可能。因此,本文概述了一个正在进行的博士项目,旨在调查computerǦmediated onǦbody压缩系统的使用,以扩大我们对压缩对用户的客观和主观影响的理解。
The sense of touch, through stimulation of the skin by mechanical, thermal, chemical or electrical stimuli, is an important way to perceive and represent reality. A variety of sensations can be elicited, such as temperature, vibration, pressure, tapping, and pain. One of these sensations is counterǦpressure, or compression. Compression is a ubiquitous sensation; from feeling pressure on the soles of our feet, to wearing formǦϐitted clothing, or receiving a hug. It is also used in a variety of applications related to human health, such as graduated stockings to improve circulation and antiǦgravity suits worn by astronauts subjected to high acceleration forces. Further, interventions such as weighted vests, massage therapies, and infant swaddling, all beneϐit from the use of compression to positively affect the wellbeing and emotion of users. Such applications have seen the beneϐits of strategicallyǦapplied compression by decreasing anxiety, promoting feelings of calmness and improving alertness [1] Ȃ [4]. Despite touch being the ϐirst sensory system to develop in all animal species and the skin being the largest sensory organ, the experience of touch, including compression, is vastly understudied [4]. Recent work in this area have shown the development of a new breed of garmentǦbased dynamic compression technology, capable of producing computerǦ mediated compression effects on the body, an advancement that makes it uniquely possible to drive this domain of study forward [5]. Therefore, this position paper outlines an ongoing PhD project, seeking to investigate the use of computerǦmediated onǦbody compression systems to expand our understanding of the objective and subjective effects of compression on a user.
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