Related Experiment Video
Updated: Jul 10, 2026

MPI CyberMotion Simulator: Implementation of a Novel Motion Simulator to Investigate Multisensory Path Integration in Three Dimensions
Published on: May 10, 2012
A Journey Into a Traveler's Mental Map: Duration, Distance, and Speed Experienced in High-Speed Trains
Yvan Nédélec1,2, Raphaël Bordas1, Diane Sam-Mine3
1CEA/DRF/Institut Joliot, NeuroSpin; INSERM, Cognitive Neuroimaging Unit, Université Paris-Saclay.
Abstract:
Our study investigates how high-speed transport affects humans' perception of time, space, and speed. We tested 247 passengers traveling on the French Paris-Lyon high-speed train (TGV) who estimated the traveled distance, elapsed duration, and instantaneous and average speeds, while rating their confidence, felt speed of time passage, and emotional state. Environmental variables in this In Situ design included seating orientation (forward or backward) and train acceleration (positive, null [constant high-speed], or negative [deceleration]). Our findings show that participants' magnitude (duration, distance) estimations scaled with magnitudes. Estimations also exhibited typical features such as central tendency, which interestingly scaled to the midpoint of the journey (∼69 min) rather than the expected ∼15 min. Surprisingly, we found no influence of emotions or felt speed of time passage on magnitude and speed estimates. Instead, participants' prior knowledge of the journey's total duration and distance better explained their magnitude estimations than their on-the-fly speed estimates. Seating orientation did not significantly affect estimations, whereas acceleration partly did. Participants demonstrated reliable metacognitive ratings of their duration and instantaneous speed estimates, but not of their distance and average speed estimates. Altogether, our results show that in passive high-speed transport, passengers may rely on cognitive heuristics (mental maps) rather than sensorimotor integration (path integration) to estimate magnitudes. We discuss the implications of our work for understanding mental representations of magnitudes and speed in real-life situations.
Related Concept Videos
Average Velocity
Relative Velocity in One Dimension
Introduction to Limits
Distance Problem
Speed of a Transverse Wave
One of the key properties of any wave is the wave speed. Light...
Instantaneous Center of Zero Velocity
To analyze this, consider two points on the wheel: point A and point B. The absolute velocity of point B can be expressed as the vector sum of the absolute velocity of point A and the relative velocity of point B with respect to point A. To simplify this analysis,...
