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Published on: January 23, 2017
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
Abstract:
Monkeys with aspiration lesions of the magnocellular division of the mediodorsal thalamus (MDmc) are impaired in object-in-place scene learning, object recognition, and stimulus-reward association. These data have been interpreted to mean that projections from MDmc to prefrontal cortex are required to sustain normal prefrontal function in a variety of task settings. In the present study, we investigated the extent to which bilateral neurotoxic lesions of the MDmc impair a preoperatively learnt strategy implementation task that is impaired by a crossed lesion technique that disconnects the frontal cortex in one hemisphere from the contralateral inferotemporal cortex. Postoperative memory impairments were also examined using the object-in-place scene memory task. Monkeys learnt both strategy implementation and scene memory tasks separately to a stable level preoperatively. Bilateral neurotoxic lesions of the MDmc, produced by 10 x 1 microl injections of a mixture of ibotenate and NMDA did not affect performance in the strategy implementation task. However, new learning of object-in-place scene memory was substantially impaired. These results provide new evidence about the role of the magnocellular mediodorsal thalamic nucleus in memory processing, indicating that interconnections with the prefrontal cortex are essential during new learning, but are not required when implementing a preoperatively acquired strategy task. Thus, not all functions of the prefrontal cortex require MDmc input. Instead, the involvement of MDmc in prefrontal function may be limited to situations in which new learning must occur.
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.

