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Mozumder, R.

Publications and source records attributed to Mozumder, R..

2 recordsLinked to original sources

Single-neuron and population measures of neuronal activity in working memory tasks

Information represented in working memory is reflected in the firing rate of neurons in the prefrontal cortex and brain areas connected to it. In recent years, there has been an increased realization that population measures capture more accurately neural correlates of cognitive functions. We examined how single neuron firing in the prefrontal and posterior parietal cortex of two male monkeys compared with population measures in spatial working memory tasks. Persistent activity was observed in the dorsolateral prefrontal and posterior parietal cortex and firing rate predicted working memory behavior, particularly in the prefrontal cortex. These findings had equivalents in population measures, including trajectories in state space that became less separated in error trials. We additionally observed rotations of the stimulus space for different task conditions, which was not obvious in firing rate measures. These results suggest that population measures provide a richer view of how neuronal activity is associated with behavior, however, largely confirm that persistent activity is the core phenomenon that maintains visual-spatial information in working memory. NEW & NOTEWORTHYRecordings from large numbers of neurons led to a re-evaluation of neural correlates of cognitive functions, which traditionally were defined based on responses of single neurons, or averages of firing rates. Analysis of neuronal recordings from the dorsolateral prefrontal and posterior parietal cortex revealed that properties of neuronal firing captured in classical studies of persistent activity can account for population representations, though some population characteristics did not have clear correlates in single neuron activity.

neuroscience↗

Influence of Fast-Spiking Prefrontal Neurons on Working Memory Behavior

Working memory is a limited-capacity system for maintaining and manipulating information for recall. Neurons that generate persistent activity in the primate dorsolateral prefrontal and posterior parietal cortex have been shown to be predictive of behavior in working memory tasks, though subtle differences between them have been observed in how information was represented, in some tasks. The role of different neuron types in each of these areas has not been investigated at depth. We thus compared the activity of neurons classified as fast-spiking, putative interneurons, and regular-spiking, putative pyramidal neurons, recorded from the prefrontal and posterior parietal cortex of male monkeys, to analyze their role in the maintenance of working memory. Our results demonstrate that fast-spiking neurons are active during a range of tasks and generate persistent activity during the delay period over which stimuli need to be maintained in memory. Furthermore, the activity of fast spiking neurons, particularly in the prefrontal cortex, is predictive of the subjects recall no less than that of regular-spiking neurons, which are exclusively projection neurons in the cortex and thus capable of transmitting signals from the prefrontal cortex into other areas. Our results shed light onto the fundamental neural circuits that determine subjects memories and judgments.

neuroscience↗