973 research outputs found

    Disorders of lexical access and production

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    Disorders of lexical access are characterized by inconsistent lexical access such that individuals successfully comprehend or produce a word in some contexts but fail on other occasions. Therefore, the lexical representations are thought to be intact, but their retrieval or activation is impaired and/or competing representations are not effectively managed. Lexical access deficits are most well-studied in individuals with aphasia, though some degree of lexical access difficulty can occur in a wide variety of neurogenic and developmental disorders, as well as in typical aging. This chapter focuses on the intersections of language, cognitive control, and memory: (1) how inhibition of lexical competitors and selection among competitors may explain some lexical access deficit phenomena, and (2) learning and retrieval processes in lexical access deficits from both basic research and translational application perspectives

    Lesion correlates of auditory sentence comprehension deficits in post-stroke aphasia

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    Auditory sentence comprehension requires coordination of multiple levels of processing: auditory-phonological perception, lexical-semantic comprehension, syntactic parsing and discourse construction, as well as executive functions such as verbal working memory (WM) and cognitive control. This study examined the lesion correlates of sentence comprehension deficits in post-stroke aphasia, building on prior work on this topic by using a different and clinically-relevant measure of sentence comprehension (the Token Test) and multivariate (SCCAN) and connectome-based lesion-symptom mapping methods. The key findings were that lesions in the posterior superior temporal lobe and inferior frontal gyrus (pars triangularis) were associated with sentence comprehension deficits, which was observed in both mass univariate and multivariate lesion-symptom mapping. Graph theoretic measures of connectome disruption were not statistically significantly associated with sentence comprehension deficits after accounting for overall lesion size

    Phase synchronization during the processing of taxonomic and thematic relations

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    Semantic relations include “taxonomic” relations based on shared features and “thematic” relations based on co-occurrence in events. The “dual-hub” account proposes that the anterior temporal lobe (ATL) is functionally specialized for taxonomic relations and the inferior parietal lobule (IPL) for thematic relations. This study examined this claim by analyzing the intra- and inter-region phase synchronization of intracranial EEG data from electrodes in the ATL, IPL, and two subregions of the semantic control network: left inferior frontal gyrus (IFG) and posterior middle temporal gyrus (pMTG). Ten participants with epilepsy completed a semantic relatedness judgment task during intracranial EEG recording and had electrodes in at least one hub and at least one semantic control region. Theta band phase synchronization was partially consistent with the dual-hub account: synchronization between the ATL and IFG/pMTG increased when processing taxonomic relations, and synchronization within the IPL and between IPL and pMTG increased when processing thematic relations
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