Literature DB >> 31701121

Dissociable Mechanisms of Verbal Working Memory Revealed through Multivariate Lesion Mapping.

Maryam Ghaleh1, Elizabeth H Lacey1,2, Mackenzie E Fama1,3, Zainab Anbari1, Andrew T DeMarco1, Peter E Turkeltaub1,2.   

Abstract

Two maintenance mechanisms with separate neural systems have been suggested for verbal working memory: articulatory-rehearsal and non-articulatory maintenance. Although lesion data would be key to understanding the essential neural substrates of these systems, there is little evidence from lesion studies that the two proposed mechanisms crucially rely on different neuroanatomical substrates. We examined 39 healthy adults and 71 individuals with chronic left-hemisphere stroke to determine if verbal working memory tasks with varying demands would rely on dissociable brain structures. Multivariate lesion-symptom mapping was used to identify the brain regions involved in each task, controlling for spatial working memory scores. Maintenance of verbal information relied on distinct brain regions depending on task demands: sensorimotor cortex under higher demands and superior temporal gyrus (STG) under lower demands. Inferior parietal cortex and posterior STG were involved under both low and high demands. These results suggest that maintenance of auditory information preferentially relies on auditory-phonological storage in the STG via a nonarticulatory maintenance when demands are low. Under higher demands, sensorimotor regions are crucial for the articulatory rehearsal process, which reduces the reliance on STG for maintenance. Lesions to either of these regions impair maintenance of verbal information preferentially under the appropriate task conditions.
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Entities:  

Keywords:  articulatory rehearsal; lesion–symptom mapping; nonarticulatory maintenance; verbal working memory; working memory demands

Year:  2020        PMID: 31701121      PMCID: PMC7305798          DOI: 10.1093/cercor/bhz259

Source DB:  PubMed          Journal:  Cereb Cortex        ISSN: 1047-3211            Impact factor:   5.357


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