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Pexman, P. M.

Publications and source records attributed to Pexman, P. M..

2 recordsLinked to original sources

Social Experience and Motivated Cognition Shape the Representation of Concepts: A Behavioural and Functional Neuroimaging Study

The ventrolateral anterior temporal lobe (vlATL), including the anterior inferior temporal and fusiform gyri, is the centre of a supramodal and category-general hub for semantic representation. Dorsolateral ATL regions, such as the temporal pole (TP) and anterior middle temporal gyrus (aMTG), have been associated with more specialised semantic function, including social concept processing, although the precise location and laterality of these effects vary across studies, prohibiting firm conclusions. The socialness of concepts has been defined in numerous different ways which, along with uncontrolled effects of other semantic dimensions, could explain inconsistencies in previous behavioural and neuroimaging findings. Therefore, we used a new set of validated socialness norms to compare social and non-social concept processing, while controlling for other important semantic variables, including concreteness and valence. Moreover, we report the first investigation of a potential link between socialness and motivation. This was aimed at unpacking the informational content or processes that make social concepts unique, and particularly a putative role of reward processing. We report two pre-registered experiments, one behavioural (N = 89) and one using fMRI (N = 30), examining the orthogonal effects of socialness and motivation on semantic decisions. Consistent with other recent findings, social concepts were processed more accurately than non-social concepts. Left TP activation was driven by social concepts but not non-social concepts, and some evidence suggests there is also right TP selectivity for social concepts. All concept types engaged the left vlATL and bilateral aMTG suggestive of a category-general semantic function. Multivariate pattern analyses found distinguishable local activation patterns associated with social vs non-social concepts in the left TP, aMTG, and vlATL, and for high vs low motivation concepts in the left TP and aMTG. The activation patterns encoding socialness in the aMTG generalized across levels of motivation, suggesting that socialness is encoded independently of motivation-related information. These findings align with multiple representation theories that claim social and reward-related experiences contribute to semantic representation. They also particularly pinpoint the left TP as having a preference for social concepts.

neuroscience↗

Mapping Contributions of the Anterior Temporal Semantic Hub to the Processing of Abstract and Concrete Verbs

Multiple representation theories of semantic processing propose that word meaning is supported by simulated sensorimotor experience in modality-specific neural regions, as well as in cognitive systems that involve processing of linguistic, emotional, and introspective information. According to the Hub and Spoke Model of Semantic Memory, activity from these distributed cortical areas feeds into a primary semantic hub located in the ventral anterior temporal lobe (vATL). Though a substantial amount of research has tested this model in terms of concrete noun representation, there is less known about how this model can account for the representation of verb meaning, and in particular the meaning of abstract verbs which convey important information, for example, about socioemotional dynamics. In the present pre-registered study, we examined whether different types of abstract verbs (mental, emotional, nonembodied) and concrete (embodied) verbs all engage the vATL, and also whether they differentially recruit a broader set of distributed neurocognitive systems (consistent with multiple representation theories). Finally, we investigated whether there is information about different verb types distributed across the broader ATL region, consistent with a Graded Semantic Hub Hypothesis. We collected data from 30 participants who completed a syntactic classification task (is it a verb? Yes or no) and a numerical judgement task which served as an active but less semantic baseline task. Whole brain univariate analyses revealed consistent BOLD signal throughout the canonical semantic network, including the left inferior frontal gyrus, left middle temporal gyrus, and the vATL. All types of abstract verbs engaged the vATL except for mental state verbs. Finally, a multivariate pattern analysis revealed clusters within the ATL that were differentially engaged when processing each type of abstract verb. Our findings extend previous research and suggest that the hub-and-spoke hypothesis and the graded semantic hub hypothesis provide a neurobiologically constrained model of semantics that can account for abstract verb representation and processing.

neuroscience↗