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Stimulation of Cortisol During Mental Task Performance in a Provocative Virtual Environment
Authors:Email author" target="_blank">Alex?H?BullingerEmail author  Ullrich?M?Hemmeter  Oliver?Stefani  Isabelle?Angehrn  Franz?Mueller-Spahn  Evangelos?Bekiaris  Brenda?K?Wiederhold  Hubert?Sulzenbacher  Ralph?Mager
Institution:(1) COAT-Basel/UPKBS, Department of Psychiatry, University of Basel, Basel, Switzerland;(2) Psychiatric University Clinic, University of Marburg, Marburg, Germany;(3) CERTH/HIT, Centre for Research and Technology Hellas, Athens, Greece;(4) Virtual Reality Medical Center, San Diego, California;(5) Psychiatric Clinic, University of Innsbruck, Innsbruck, Austria;(6) COAT-Basel/UPKBS, Center of Applied Technologies in Neuroscience, Wilhelm Klein-Strasse 27, 4025 Basel, Switzerland
Abstract:Fully immersive and stereoscopic Virtual Environments (VE) represent a powerful multimedia tool for laboratory-based simulations of distinct scenarios including scenarios for evaluating stressful situations resembling reality. Thus far, cortisol secretion as a neuroendocrine parameter of stress has not been evaluated within a Virtual Reality (VR)-based paradigm. In this study 94 healthy volunteers were subjected to a provocative VR-paradigm and a cognitive stress task. Provocative in this context means the VE was designed to provoke physiological reactions (cortisol secretion) within the respective users by purpose. It was tested (a) if a fully dynamic VE as opposed to a static VE can be regarded as a stressor and (b) if such a fully dynamic VE can modify an additional response to a cognitive stressor presented within the VE additionally. Furthermore, possible gender-related impacts on cortisol responses were assessed. A significant cortisol increase was observed only after the combined application of the fully dynamic VE and the cognitive stressor, but not after application of the dynamic VE or the cognitive stressor alone. Cortisol reactivity was greater for men than for women. We conclude that a fully dynamic VE does not affect cortisol secretion per se, but increases cortisol responses to a dual task paradigm that includes performance of a stressful mental task. This provides the basis for the application of VR-based technologies in neuroscientific research, including the assessment of the human Hypothalamus-Pituitary-Adrenal (HPA) axis regulation.
Keywords:virtual environment  virtual reality  cognitive stress  cortisol  gender
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