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Ilardi, C. R.

Publications and source records attributed to Ilardi, C. R..

2 recordsLinked to original sources

Left Area PF as a Neural Marker of Technical Reasoning

Humans possess a unique capacity for technical reasoning--the ability to infer and manipulate the causal structure of the physical world. Although this faculty is central to technological innovation, its neural substrates remain incompletely understood. Here, we show that grey matter volume in the left cytoarchitectonic area PF, within the supramarginal gyrus of the inferior parietal lobule, selectively predicts and accurately classifies technical reasoning performance in healthy adults (N = 75; 54 females; mean age = 20.92 {+/-} 3.28 years). This association persists independently of demographic factors, personality traits, and total brain volume. By contrast, grey matter volume in right prefrontal regions, examined as control areas, correlates with broader cognitive functions--namely, fluid intelligence and abstract reasoning, but not with technical reasoning. These findings support the hypothesis that the left area PF is a domain-specific substrate for technical reasoning. Situated within a parietal territory that is evolutionarily expanded in humans, this region may constitute a neural signature of the human capacity to understand and reshape the material world.

neuroscience↗

The visual encoding of familiar and unfamiliar tools

How do we extract meaning and understand the action potential of everyday objects? In this eye-tracking study, we show that familiarity with tools modulates the temporal dynamics of their visual exploration. Twenty-five right-handed participants (14 females; mean age = 23.6 {+/-} 3.34 years) freely observed images of familiar and unfamiliar tools while their eye movements were recorded over a 1500-millisecond window. All tools were post-hoc segmented into functional and manipulative areas. Participants initially prioritized functional components--particularly for unfamiliar tools. Attention to manipulative features emerged later and remained attenuated throughout viewing. In contrast, familiar tools prompted earlier and sustained visual attention on manipulative regions, suggesting faster access to action-related representations. These results support a sequential semantic-to-sensorimotor model of object perception, in which previous knowledge facilitates the transition from semantic identification to action-related engagement.

neuroscience↗