A Wrist-Worn Thermohaptic Device for Graceful Interruption
- Frank Bolton,
- Shahram Jalaliniya,
- Thomas Pederson
- Tel Aviv University,
Research Output:
Journal Article or Conference Article in Journal
Journal article
Peer-reviewOpen access
Publication Information
Output type
Research Output:
Journal Article or Conference Article in Journal
Journal article
Peer-reviewOriginal language
EnglishPages from-to (Number of pages)
Pages 39-54 (16 pages)Journal (Volume, Issue Number)
ID&A Interaction design & architecture(s) (Volume 26)Publication milestones
- Published - 09/12/2015
Publication status
Published - 09/12/2015
ISSN
1826-9745Publication IDs
- Scopus: 84964766255
Abstract
Thermal haptics is a potential system output modality for wearable devices that promises to function at the periphery of human attention. When adequately combined with existing attention-governing mechanisms of the human mind, it could be used for interrupting the human agent at a time when the negative influence on the ongoing activity is minimal. In this article we present our self-mitigated interruption concept (essentially a symbiosis of artificial external stimuli tuned to existing human attention management mechanisms) and perform a pilot study laying the ground for using a wrist-worn thermohaptic actuator for self-mitigating interruption. We then develop a prototype and perform an insightful pilot study.
We frame our empirical thermohaptic experimental work in terms of Peripheral Interaction concepts and show how this new approach to Human-Computer Interaction relates to the Context-Aware-systems-inspired approach “Egocentric Interaction” aimed at supporting the design of envisioned Wearable Personal Assistants intended to, among other things, help human perception and cognition with the management of interruptions.
We frame our empirical thermohaptic experimental work in terms of Peripheral Interaction concepts and show how this new approach to Human-Computer Interaction relates to the Context-Aware-systems-inspired approach “Egocentric Interaction” aimed at supporting the design of envisioned Wearable Personal Assistants intended to, among other things, help human perception and cognition with the management of interruptions.
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Citations
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Access to documents
Accepted author manuscript, 2.61 MB
Final published version
