The article reports that adults with stronger math abilities tend to rely less on the brain's sensorimotor regions when processing numbers, indicating a shift toward more automatic and abstract numerical processing with higher proficiency.

This topic is of interest to psychology because it highlights how cognitive processing strategies can become more efficient with experience, illustrating neural plasticity and the transition from embodied to abstract representations in skills development.

Article Title: Adults with better math skills rely less on the brainโ€™s physical movement areas

Link to PsyPost Article: https://nolinkpreview.com/www.psypost.org/adults-with-better-math-skills-rely-less-on-the-brains-physical-movement-areas/

#math #cognition #neuroscience #embodiedcognition #neuralefficiency #sensorimotor #automaticity #numericalprocessing #fMRI #brainresearch

๐Ÿ’ก Exploring the Intraparietal Sulcus (IPS) and its connection to dyscalculia reveals its crucial role in numerical processing. Dyscalculia, a learning disability, is linked to impaired function in the IPS, affecting the Approximate Number System (ANS). Understanding Weber's Law helps explain how numerical distinctions are made. Enhancing awareness can improve educational strategies for those affected. #Dyscalculia #NumericalProcessing #WeberLaw #IntraparietalSulcus #LearningDisability ๐Ÿ’ก