Driving strategy alters neuronal responses to self-movement: cortical mechanisms of distracted driving.

Author(s)
Kishore, S. Hornick, N. Sato, N. Page, W.K. & Duffy, C.J.
Year
Abstract

The authors presented naturalistic combinations of virtual self-movement stimuli while recording neuronal activity in monkey cerebral cortex. Monkeys used a joystick to drive to a straight ahead heading direction guided by either object motion or optic flow. The selected cue dominates neuronal responses, often mimicking responses evoked when that stimulus is presented alone. In some neurons, driving strategy creates selective response additivities. In others, it creates vulnerabilities to the disruptive effects of independently moving objects. Such cue interactions may be related to the disruptive effects of independently moving objects in Alzheimer's disease patients with navigational deficits. (Author/publisher)

Publication

Library number
20131071 ST [electronic version only]
Source

Cerebral Cortex, Vol. 22 (2012), No. 1 (January), p. 201-208, 34 ref.

Our collection

This publication is one of our other publications, and part of our extensive collection of road safety literature, that also includes the SWOV publications.