Adrian Marinescu email@example.com
Physiological parameter response to variation of mental workload
Marinescu, Adrian; Sharples, Sarah; Campbell Ritchie, Alastair; Sanchez Lopez, Tomas; McDowell, Michael; Morvan, Herve
Sarah Sharples Sarah.Sharples@nottingham.ac.uk
Alastair Campbell Ritchie firstname.lastname@example.org
Tomas Sanchez Lopez email@example.com
Michael McDowell firstname.lastname@example.org
Herve Morvan Herve.Morvan@nottingham.ac.uk
Previous studies have examined how individual physiological measures respond to changes in mental demand and subjective reports of mental workload. This study explores the response of multiple physiological parameters, measured simultaneously and quantifies the added value of each of the measures when estimating the level of demand.
The study presented was conducted in laboratory conditions and required participants to perform a custom-designed visual-motor task that imposed varying levels of demand. The data collected consisted of: physiological measurements (heart inter-beat intervals, breathing rate, pupil diameter, facial thermography); subjective ratings of workload from the participants (ISA and NASA-TLX); and the performance measured within the task.
Facial thermography and pupil diameter were demonstrated to be good candidates for non-invasive mental workload measurements; for 7 out of 10 participants, pupil diameter showed a strong correlation (with R values between 0.61 and 0.79 at a significance value of 0.01) with mean ISA normalized values. Facial thermography measures added on average 47.7% to the amount of variability in task performance explained by a regression model. As with the ISA ratings, the relationship between the physiological measures and performance showed strong inter-participant differences, with some individuals demonstrating a much stronger relationship between workload and performance measures than others.
The results presented in this paper demonstrate that physiological monitoring can be used for non-invasive real-time measurement of workload, assuming models have been appropriately trained on previously recorded data from the user population. Facial thermography combined with measurement of pupil diameter are strong candidates for real-time monitoring of workload due to the availability and non-intrusive nature of current technology. The study also demonstrates the importance of identifying whether an individual is one who demonstrates a strong relationship between physiological measures and experienced workload measures before physiological measures are applied uniformly. This is a feasible proposition in a setting such as aircraft cockpits, where pilots are drawn from a relatively small, targeted and managed population.
|Journal Article Type||Article|
|Publisher||SAGE Publications (UK and US)|
|Peer Reviewed||Peer Reviewed|
|APA6 Citation||Marinescu, A., Sharples, S., Campbell Ritchie, A., Sanchez Lopez, T., McDowell, M., & Morvan, H. (in press). Physiological parameter response to variation of mental workload. Human Factors, doi:10.1177/0018720817733101|
|Keywords||mental workload, human performance, facial-thermography, pupil diameter, physiological measures|
|Copyright Statement||Copyright information regarding this work can be found at the following address: http://creativecommons.org/licenses/by-nc/4.0|
Physiological Parameter Response to Variation of Mental Workload_latest_version.pdf
Copyright information regarding this work can be found at the following address: http://creativecommons.org/licenses/by-nc/4.0
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