The Impact of Internal Distraction on Driver Visual Behavior
Authors: Harbluk, J. L., Noy, Y. I. (Transport Canada, Ottawa, ON, Canada), & Eizenman, M. (University of Toronto, Toronto, ON, Canada).
The Influence of the Use of Mobile Phones on Driver Situation Awareness
Authors: Parkes, A. (Transport Research Laboratory, Crowthorne, England) & Hooijmeijer, V. (Verkeersadviesburo Diepens en Okkema, Eindhoven, The Netherlands).
Issues in the Evaluation of Driver Distraction Associated with In-Vehicle Information and Telecommunications Systems
Authors: Tijerina, L. (Transportation Research Center Inc.).
Individual Differences and In-Vehicle Distraction While Driving: A Test Track Study and Psychometric Evaluation
Authors: Tijerina, L., Parmer, E. B. (Transportation Research Center Inc.), & Goodman, M. J. (National Highway Traffic Safety Administration).
Association Between Cellular-Telephone Calls and Motor Vehicle Collisions
Authors: Redelmeier, D. A. & Tibshirani, R. J..
Measuring Driver Visual Distraction with a Peripheral Detection Task
Authors: Olsson, S. & Burns, P. C. (Department of Education & Psychology, Linkoping University, Sweden; Volvo Technological Development Corporation, Gothenburg, Sweden).
A Technical Platform for Driver Inattention Research
Authors: Victor, T. (Volvo Technological Development Corporation, Human Systems Integration, Göteborg, Sweden.) & The Graduate School for Human Machine Interaction, (Division of Industrial Ergonomics Dept of Mechanical Engineering Linköping Institute of Technology, Sweden).
The Development of a Design Evaluation Tool and Model of Attention Demand
Authors: Hankey, J. M., Dingus, T. A., Hanowski, R. J., Wierwille, W. W. (Virginia Tech Transportation Institute), Monk, C. A. (Science Applications Internationl Corporation), & Moyer, M. J. (Federal Highway Administration).
Divided Attention Ability of Young and Older Drivers
Authors: Mourant, R. R., Tsai, F., Al-Shihabi, T., & Jaeger, B. K. (Virtual Environments Laboratory, Department of Mechanical, Industrial and Manufacturing Engineering, Northeastern University).
Driver Workload Assessment of Route Guidance System Destination Entry While Driving: A Test Track Study
Authors: Tijerina, L., Parmer, E. B. (Transportation Research Center Inc., East Liberty, OH), & Goodman, M. J. (National Highway Traffic Safety Administration, NHTSA, Washington, D.C.).
Speech-based Interaction with In-vehicle Computers: The Effect of Speech-based E-mail on Drivers’ Attention to the Roadway
Authors: Lee, J. D., Caven, B., Haake, S., & Brown, T. L. (Cognitive Systems Laboratory, University of Iowa, Department of Industrial Engineering, Iowa City, Iowa).
Integration of Driver In-Vehicle ITS Information
Authors: Kantowitz, B. H. (Battelle Human Factors Transportation Center, Seattle, Washington) & Moyer, M. J. (Federal Highway Administration, Turner Fairbank Highway Research Center, McLean, Virginia).
E-Distraction: The Challenges for Safe and Usable Internet Services in Vehicles
Authors: Burns, P.C. (Volvo Technological Development Corporation, Gothenburg, Sweden) & Lansdown, T.C. (Transportation Research Laboratory, Crowthorne, Berkshire, U.K.).
Development of Safety Principles for In-Vehicle Information and Communication Systems
Authors: Stevens, A. (Transportation Research Laboratory, Crowthrone Berkshire, U.K.) & Rai, G. (Department of Environment, Transport and the Regions, London, U.K.).
Can Collision Warning Systems Mitigate Distraction Due to In-Vehicle Devices?
Authors: John D. Lee, Michelle L. Ries, Daniel V. McGehee, and Timothy L. Brown (Cognitive Systems Laboratory, Department of Industrial Engineering, University of Iowa) and Michael Perel (National Highway Traffic Safety Administration)
Proposed Driver Workload Metrics and Methods Project
Authors: Crash Avoidance Metrics Partnership (CAMP)
Ford Motor Company and General Motors Corporation created the Crash Avoidance Metrics Partnership (CAMP) in 1995 to conduct joint pre-competitive projects to accelerate the deployment of future crash avoidance measures. The proposed program utilizes the flexibility of this existing mechanism to bring together Ford Motor Company, General Motors Corporation, Nissan Technical Center North America, Inc. and Toyota Technical Center Inc. USA to propose a Driver Workload Metrics project. This effort will attempt to develop practical, repeatable driver workload metrics and procedures for both visual and cognitive demand that can realistically assess which types of driver interface tasks are appropriate to perform while a vehicle is in motion. In the future, vehicle OEMs will be able to use these workload evaluation procedures to assess what in-vehicle tasks might be accessible to a driver while the vehicle is in motion. The research approach will explore both “ground truth” workload measures taken under test track or on-road driving conditions as well models, simulations or procedures that have been recently developed or proposed. This research will provide a firm foundation for future assessment of feature availability for driver information systems while the vehicle is in motion.
In-Vehicle Communication and Driving: An Attempt to Overcome their Interference
Authors: Mark Vollrath and Ingo Totzke (Center for Traffic Sciences, IZVW, University of Wuerzburg, Germany)
Measuring distraction: the Peripheral Detection Task
Authors: M.H. Martens & W. van Winsum (TNO Human Factors, Soesterberg, The Netherlands)
On the Need for Driver Attention Support Systems
Authors: Victor , T. (Volvo Technological Development Corporation)
NHTSA Driver Distraction Research: Past, Present, and Future
Authors: Thomas A. Ranney (Transportation Research Center Inc.), Elizabeth Mazzae and Riley Garrott (NHTSA, Vehicle Test and Research Center), and Michael J. Goodman (NHTSA, Research and Development)
Driver distraction in the European statement of principles on in-vehicle HMI: a comment
Authors: Wiel Janssen (TNO Human Factors, The Netherlands)