Risk behaviour and mental workload: Multimodal assessment techniques applied to motorbike riding simulation |
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Authors: | Leandro L. Di Stasi, Vanessa lvarez-Valbuena, Jos J. Ca as, Antonio Maldonado, Andr s Catena, Adoraci n Antolí ,Antonio Candido |
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Affiliation: | aCognitive Ergonomics Group, Department of Experimental Psychology, Faculty of Psychology, University of Granada, Campus de Cartuja, s/n. 18071 Granada, Spain;bAnimal and Human Learning Group, Department of Experimental Psychology, Faculty of Psychology, University of Granada, Campus de Cartuja, s/n. 18071 Granada, Spain |
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Abstract: | We present data from an ongoing research project on the cognitive, emotional and neuropsychological basis of risk behaviour. The main aim of the project is to build a model of risk behaviour so that if we know certain cognitive, behavioural and emotional variables, we will be able to predict decisions made in the face of uncertainty and risk, with the final goal of designing programs for evaluating, preventing and controlling risk behaviour. The objective of the present study was to look for individual differences in hazard perception during a static riding simulation and their relationship with mental workload. We used a multidimensional methodology, including behavioural, subjective and physiological data. The behavioural measures were obtained in a static riding simulation during eight hazard situations. We evaluated whether eye activity measures correlated with cognitive workload and different types of risky behaviours. Eye movement parameters were measured using a video-based eye tracking system. We found that risk-prone individuals showed specific patterns of risky behaviours and that peak of saccadic velocity and subjective mental workload indexes were both reliable indicators of risk proneness. Mental workload was higher for participants showing attitudes to risk behaviours probably because of a lack of conscious awareness of specific cues indicating dangerous scenarios. |
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Keywords: | Risky behaviour Mental workload Peak of saccadic velocity Riding simulation Multimodal assessment |
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