Detection of Brake Lights While Distracted: Separating Peripheral Vision from Cognitive Load

MIT Center for Transportation & Logistics Research Paper No. 2019/014

Attention, Perception, & Psychophysics, volume 81, issue 8, 2019[10.3758/s13414-019-01795-4]

Posted: 28 Apr 2025

See all articles by Benjamin Wolfe

Benjamin Wolfe

affiliation not provided to SSRN

Ben D. Sawyer

affiliation not provided to SSRN

Anna Kosovicheva

affiliation not provided to SSRN

Bryan Reimer

Massachusetts Institute of Technology (MIT) - Center for Transportation & Logistics

Ruth Rosenholtz

affiliation not provided to SSRN

Date Written: January 11, 2019

Abstract

Drivers rarely focus exclusively on driving, even with the best of intentions. They are distracted by passengers, navigation systems, smartphones, and driver assistance systems. Driving itself requires performing simultaneous tasks, including lane keeping, looking for signs, and avoiding pedestrians. The dangers of multitasking while driving, and efforts to combat it, often focus on the distraction itself, rather than on how a distracting task can change what the driver can perceive. Critically, some distracting tasks require the driver to look away from the road, which forces the driver to use peripheral vision to detect driving-relevant events. As a consequence, both looking away and being distracted may degrade driving performance. To assess the relative contributions of these factors, we conducted a laboratory experiment in which we separately varied cognitive load and point of gaze. Subjects performed a visual 0-back or 1-back task at one of four fixation locations superimposed on a real-world driving video, while simultaneously monitoring for brake lights in their lane of travel. Subjects were able to detect brake lights in all conditions, but once the eccentricity of the brake lights increased, they responded more slowly and missed more braking events. However, our cognitive load manipulation had minimal effects on detection performance, reaction times, or miss rates for brake lights. These results suggest that, for tasks that require the driver to look off-road, the decrements observed may be due to the need to use peripheral vision to monitor the road, rather than due to the distraction itself. © 2019, The Psychonomic Society, Inc.

Keywords: Attention, Scene perception, Visual perception

Suggested Citation

Wolfe, Benjamin and Sawyer, Ben D. and Kosovicheva, Anna and Reimer, Bryan and Rosenholtz, Ruth, Detection of Brake Lights While Distracted: Separating Peripheral Vision from Cognitive Load (January 11, 2019). MIT Center for Transportation & Logistics Research Paper No. 2019/014, Attention, Perception, & Psychophysics, volume 81, issue 8, 2019[10.3758/s13414-019-01795-4], Available at SSRN: https://ssrn.com/abstract=5230926

Benjamin Wolfe (Contact Author)

affiliation not provided to SSRN

Ben D. Sawyer

affiliation not provided to SSRN

Anna Kosovicheva

affiliation not provided to SSRN

Bryan Reimer

Massachusetts Institute of Technology (MIT) - Center for Transportation & Logistics ( email )

United States

Ruth Rosenholtz

affiliation not provided to SSRN

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