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Tellez, L. A.

Publications and source records attributed to Tellez, L. A..

2 recordsLinked to original sources

Encoding visual stimuli by striatal neurons

To move through the world, animals extract visual features from objects. Although visual object encoding is considered a cortical attribute, subcortical areas also contain visual processing circuits. Using electrophysiological recordings of spiny projection neurons (SPNs) located in a target region of the primary visual cortex, we identified striatal modules that process basic visual features. SPNs from the direct and indirect pathways exhibited high orientation selectivity in the absence of behavioral contingencies. SPNs population activity reliably predicted different visual features. Pathway-specific silencing of SPNs revealed that high orientation selectivity depends on intra-striatal connectivity. Thus, specialized striatal modules are active participants in visual feature extraction. These findings indicate parallel visual information processing in basal ganglia circuits, expanding current models of visual perception beyond cortical networks.

neuroscience↗

Preconfigured cortico-thalamic neural dynamics constrain movement-associated thalamic activity

Neural preconfigured activity patterns (nPAPs) have been proposed as building blocks for cognitive and sensory processing. However, their existence and function in motor networks have not been explicitly studied. Here, we explore the possibility that nPAPs are present in the motor thalamus (VL/VM) and their potential contribution to motor-related activity. To this end, we developed a preparation where VL/VM multiunitary activity could be robustly recorded in mouse behavior evoked by primary motor cortex (M1) optogenetic stimulation and forelimb movements. VL/VM-evoked activity was organized as rigid stereotypical activity patterns at the single and population levels. These activity patterns were unable to dynamically adapt to different temporal architectures of M1 stimulation. Moreover, they were experience-independent and present in virtually all animals, confirming their preconfigured nature. Finally, subpopulations expressing specific M1-evoked patterns also displayed specific movement-related patterns. Our data demonstrate that the behaviorally related identity of specific neural subpopulations is tightly linked to nPAPs.

neuroscience↗