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Updated: Oct 10, 2025

Infant Auditory Processing and Event-related Brain Oscillations
Published on: July 1, 2015
Changes in audio-spatial working memory abilities during childhood: The role of spatial and phonological development
Walter Setti1,2, Luigi F Cuturi2, Giulio Sandini1
1Robotics, Brain and Cognitive Science (RBCS) Unit, Istituto Italiano di Tecnologia, Genoa, Italy.
Abstract:
Working memory is a cognitive system devoted to storage and retrieval processing of information. Numerous studies on the development of working memory have investigated the processing of visuo-spatial and verbal non-spatialized information; however, little is known regarding the refinement of acoustic spatial and memory abilities across development. Here, we hypothesize that audio-spatial memory skills improve over development, due to strengthening spatial and cognitive skills such as semantic elaboration. We asked children aged 6 to 11 years old (n = 55) to pair spatialized animal calls with the corresponding animal spoken name. Spatialized sounds were emitted from an audio-haptic device, haptically explored by children with the dominant hand's index finger. Children younger than 8 anchored their exploration strategy on previously discovered sounds instead of holding this information in working memory and performed worse than older peers when asked to pair the spoken word with the corresponding animal call. In line with our hypothesis, these findings demonstrate that age-related improvements in spatial exploration and verbal coding memorization strategies affect how children learn and memorize items belonging to a complex acoustic spatial layout. Similar to vision, audio-spatial memory abilities strongly depend on cognitive development in early years of life.
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