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  4. Framework for Microdosing Odors in Virtual Reality for Psychophysiological Stress Training
 
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October 31, 2024
Journal Article
Title

Framework for Microdosing Odors in Virtual Reality for Psychophysiological Stress Training

Abstract
To better cope with stress in emergencies, emergency personnel undergo virtual reality (VR) stress training. Such training typically includes visual, auditory and sometimes tactile impressions, whereas olfactory stimuli are mostly neglected. This concept paper therefore examines whether odors might be beneficial for further enhancing the experience of presence and immersion into a simulated environment. The aim is to demonstrate the benefits of VR civilian stress training for emergency personnel and to investigate the role of odors as stressors by manipulating the degree of perceived psychophysiological stress via olfactory impressions. Moreover, the current paper presents the development and validation of a convenient and portable fragrance dosing system that allows personalized odor presentation in VR. The presented system can transport reproducible small quantities of an air-fragrance mixture close to the human nose using piezoelectric stainless steel micropumps. The results of the fluidic system validation indicate that the micropump is suitable for releasing odors close to the nose with constant amounts of odor presentation. Furthermore, the theoretical background and the planned experimental design of VR stress training, including odor presentation via olfactory VR technology, are elucidated.
Author(s)
Anheuer, Daniel  
Fraunhofer-Einrichtung für Mikrosysteme und Festkörper-Technologien EMFT  
Karacan, Brid  
Fraunhofer-Institut für Verfahrenstechnik und Verpackung IVV  
Herzog, Lara
Fraunhofer-Einrichtung für Mikrosysteme und Festkörper-Technologien EMFT  
Weigel, Nora
Fraunhofer-Einrichtung für Mikrosysteme und Festkörper-Technologien EMFT  
Meyer-Nieberg, Silja
Gebhardt, Thomas
Leopold, Armin
Eder, Monika
Richter, Martin  
Fraunhofer-Einrichtung für Mikrosysteme und Festkörper-Technologien EMFT  
Freiherr, Jessica  
Fraunhofer-Institut für Verfahrenstechnik und Verpackung IVV  
Hofmann, Marko
Renner, Karl-Heinz
Küsel, Cornelia
Journal
Sensors. Online journal  
Open Access
DOI
10.3390/s24217046
Language
English
Fraunhofer-Einrichtung für Mikrosysteme und Festkörper-Technologien EMFT  
Fraunhofer-Institut für Verfahrenstechnik und Verpackung IVV  
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