Dissociable performance on scene learning and strategy implementation after lesions to magnocellular mediodorsal

Anna S Mitchell1, Mark G Baxter, David Gaffan

  • 1Department of Experimental Psychology, Oxford University, Oxford OX1 3UD, United Kingdom. anna.mitchell@psy.ox.ac.uk

Insights

The magnocellular mediodorsal thalamus (MDmc) is crucial for new scene memory learning, but not for implementing previously learned strategies. This suggests MDmc

Area of Science:

  • Neuroscience
  • Cognitive Neuroscience
  • Primate Models

Background:

  • The magnocellular division of the mediodorsal thalamus (MDmc) plays a role in various cognitive functions, including learning and memory.
  • Previous research suggests MDmc projections to the prefrontal cortex are vital for sustained prefrontal function across tasks.

Purpose of the Study:

  • To investigate the impact of bilateral MDmc lesions on strategy implementation and new scene memory learning in monkeys.
  • To determine if MDmc is essential for implementing preoperatively learned strategies versus acquiring new memories.

Main Methods:

  • Monkeys with preoperatively learned strategy implementation and object-in-place scene memory tasks underwent bilateral neurotoxic lesions of the MDmc.
  • Performance on both tasks was assessed post-lesion to evaluate the effects of MDmc damage.

Main Results:

  • Bilateral MDmc lesions did not impair performance on the preoperatively learned strategy implementation task.
  • New learning of object-in-place scene memory was significantly impaired following MDmc lesions.

Conclusions:

  • MDmc is essential for new learning, particularly in scene memory tasks, highlighting its role in memory acquisition.
  • MDmc input to the prefrontal cortex is critical for new learning but not for the execution of established strategies, suggesting a context-dependent role.