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Vakil, E.

Publications and source records attributed to Vakil, E..

2 recordsLinked to original sources

High Cognitive Violation of Expectations is Compromised in Cerebellar Ataxia

While traditionally considered a motor structure, the cerebellum is also involved in cognition. However, the underlying cognitive mechanisms through which the cerebellum contributes to evolutionarily novel cognitive abilities remain poorly understood. Another open question is how this structure contributes to a core unifying mechanism across domains. Motivated by the evolutionary principle of neural reuse, we suggest that a successful account of cerebellar contributions to higher cognitive domains will build on the structures established role in motor behaviors. We conducted a series of neuropsychological experiments, assessing selective impairments in participants with cerebellar ataxia (CA) compared to neurotypicals in solving sequential discrete problems. In three experiments, participants were asked to solve symbolic subtraction, alphabet letter transformation, and novel artificial grammar problems, which were expected or unexpected. The CA group exhibited a disproportionate cost when comparing expected problems to unexpected problems, suggesting that the cerebellum is critical for violation of expectations (VE) across tasks. The CA group impairment was not found either when the complexity of the problem increased or in conditions of uncertainty. Together, these results demonstrate a possible causal role for the human cerebellum in higher cognitive abilities. VE might be a unifying cerebellar-dependent mechanism across motor and cognitive domains. Significance StatementWhile the cerebellum, a phylogenetically ancient brain region, is traditionally viewed as a motor structure, evidence suggests its involvement in cognition. However, the mechanisms by which the cerebellum supports evolutionarily novel cognitive abilities remain poorly understood. In addition, despite theoretical proposals, direct evidence for the cerebellums contribution to a core unifying mechanism across non-motor domains is lacking. Drawing on the principle of neural reuse, we present neuropsychological evidence highlighting the cerebellums causal role in symbolic arithmetic reasoning, alphabet transformation, and grammar problems via violation of expectations processes. The results offer a new perspective on how, rather than merely if, the cerebellum contributes to higher cognition, suggesting a constraint on its role in cognitive domains.

neuroscience↗

Electrophysiological correlates of associative recognition memory for identity, spatial, and temporal relations

The formation of associative representations and their retrieval from episodic memory are vital cognitive functions. However, it is unclear to what extent retrieval of the basic component relations of episodic memory - identity, time, and space - requires different or shared brain mechanisms. In the current study, we employed EEG to track the time courses of electrophysiological correlates of retrieval processes of memory for identity relations, temporal order, and spatial configuration. Participants engaged in pair-associate learning of serially presented and spatially configured object picture pairs, followed by discrimination of identity, spatially, or temporally intact and rearranged pairs. Event-related brain potentials (ERPs) revealed distinct patterns of activity during successful retrieval of identity, spatial, and temporal relations that differed by the status of association, across the three retrieval time windows examined (300-500, 500-800, and 800-1000 ms). The identity relations condition was distinguished by a widespread greater negative-going deflection for rearranged relative to intact pairs in all three time windows. For the temporal relations condition, we observed a widespread more negative-going deflection for rearranged than intact pairs, significant in the second time window only. For the spatial relations condition, there was a widespread positive-going deflection greater for rearranged than for intact pairs, significant in the early and in middle time windows. These patterns of activity suggest that retrieval of associative memory traces for identity, spatial, and temporal relationships involve dynamically different processes, which may partially rely on different sets of basic associative mechanisms.

neuroscience↗