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1.
Proc Natl Acad Sci U S A ; 119(50): e2214562119, 2022 12 13.
Artículo en Inglés | MEDLINE | ID: mdl-36469775

RESUMEN

The dorsal premotor cortex (DPC) has classically been associated with a role in preparing and executing the physical motor variables during cognitive tasks. While recent work has provided nuanced insights into this role, here we propose that DPC also participates more actively in decision-making. We recorded neuronal activity in DPC while two trained monkeys performed a vibrotactile categorization task, utilizing two partially overlapping ranges of stimulus values that varied on two physical attributes: vibrotactile frequency and amplitude. We observed a broad heterogeneity across DPC neurons, the majority of which maintained the same response patterns across attributes and ranges, coding in the same periods, mixing temporal and categorical dynamics. The predominant categorical signal was maintained throughout the delay, movement periods and notably during the intertrial period. Putting the entire population's data through two dimensionality reduction techniques, we found strong temporal and categorical representations without remnants of the stimuli's physical parameters. Furthermore, projecting the activity of one population over the population axes of the other yielded identical categorical and temporal responses. Finally, we sought to identify functional subpopulations based on the combined activity of all stimuli, neurons, and time points; however, we found that single-unit responses mixed temporal and categorical dynamics and couldn't be clustered. All these point to DPC playing a more decision-related role than previously anticipated.


Asunto(s)
Corteza Motora , Corteza Motora/fisiología , Neuronas/fisiología , Movimiento/fisiología
2.
Nat Commun ; 12(1): 2000, 2021 03 31.
Artículo en Inglés | MEDLINE | ID: mdl-33790301

RESUMEN

A crucial role of cortical networks is the conversion of sensory inputs into perception. In the cortical somatosensory network, neurons of the primary somatosensory cortex (S1) show invariant sensory responses, while frontal lobe neuronal activity correlates with the animal's perceptual behavior. Here, we report that in the secondary somatosensory cortex (S2), neurons with invariant sensory responses coexist with neurons whose responses correlate with perceptual behavior. Importantly, the vast majority of the neurons fall along a continuum of combined sensory and categorical dynamics. Furthermore, during a non-demanding control task, the sensory responses remain unaltered while the sensory information exhibits an increase. However, perceptual responses and the associated categorical information decrease, implicating a task context-dependent processing mechanism. Conclusively, S2 neurons exhibit intriguing dynamics that are intermediate between those of S1 and frontal lobe. Our results contribute relevant evidence about the role that S2 plays in the conversion of touch into perception.


Asunto(s)
Macaca mulatta/fisiología , Neuronas/fisiología , Células Receptoras Sensoriales/fisiología , Corteza Somatosensorial/fisiología , Percepción del Tacto/fisiología , Algoritmos , Animales , Lóbulo Frontal/citología , Lóbulo Frontal/fisiología , Modelos Neurológicos , Estimulación Física/métodos , Corteza Somatosensorial/citología
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