Related Experiment Video
Updated: Mar 14, 2026

Pavlovian Conditioned Approach Training in Rats
Published on: February 4, 2016
Neural mechanisms of cue-approach training
Akram Bakkour1, Jarrod A Lewis-Peacock2, Russell A Poldrack2
1Imaging Research Center, The University of Texas at Austin, 100 E 24th St, Stop R9975, Austin, TX 78712, USA; Department of Neuroscience, The University of Texas at Austin, 100 E 24th St, Stop C7000, Austin, TX 78712, USA.
Abstract:
Biasing choices may prove a useful way to implement behavior change. Previous work has shown that a simple training task (the cue-approach task), which does not rely on external reinforcement, can robustly influence choice behavior by biasing choice toward items that were targeted during training. In the current study, we replicate previous behavioral findings and explore the neural mechanisms underlying the shift in preferences following cue-approach training. Given recent successes in the development and application of machine learning techniques to task-based fMRI data, which have advanced understanding of the neural substrates of cognition, we sought to leverage the power of these techniques to better understand neural changes during cue-approach training that subsequently led to a shift in choice behavior. Contrary to our expectations, we found that machine learning techniques applied to fMRI data during non-reinforced training were unsuccessful in elucidating the neural mechanism underlying the behavioral effect. However, univariate analyses during training revealed that the relationship between BOLD and choices for Go items increases as training progresses compared to choices of NoGo items primarily in lateral prefrontal cortical areas. This new imaging finding suggests that preferences are shifted via differential engagement of task control networks that interact with value networks during cue-approach training.
More Related Videos
09:43A Fully Automated Rodent Conditioning Protocol for Sensorimotor Integration and Cognitive Control Experiments
Published on: April 15, 2014
09:13A Fully Automated and Highly Versatile System for Testing Multi-cognitive Functions and Recording Neuronal Activities in Rodents
Published on: May 3, 2012