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. 2018 Oct;33(5):610-615.
doi: 10.1007/s00455-018-9879-6. Epub 2018 Feb 24.

Neural Mechanisms of Swallowing Dysfunction and Apraxia of Speech in Acute Stroke

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Neural Mechanisms of Swallowing Dysfunction and Apraxia of Speech in Acute Stroke

Lydia A Trupe et al. Dysphagia. 2018 Oct.

Abstract

Speech and swallowing utilize overlapping anatomy and are thus inherently related processes. We sought to identify common neural mechanisms between risk of swallowing dysfunction and apraxia of speech (AOS). This was a retrospective analysis using data from a prospectively collected cohort. Left hemisphere stroke patients (68 subjects) tested with the Apraxia Battery for Adults II, a swallow screen, and MRI were included in the study. Main outcome measure was the presence of AOS or aspiration risk after stroke. We identified a significant association between AOS measures and increased aspiration risk (defined by failed swallow screen; p = 0.04; OR 5.2). Lesions in pars opercularis of Broca's area (BA 44) were associated with both AOS (p = 0.044; OR 9.7) and increased aspiration risk (p = 0.04; OR 5) but deficits rarely co-occurred in the same cases. Lesions in left premotor cortex (BA 6) were not significantly associated with increased aspiration risk (p = 0.06; OR 3.3) but were significantly associated with AOS (p = 0.008; OR 7). Impaired swallowing function was also associated with lesions in Wernicke's area (BA 22; p = 0.05; OR 3.5) and pars triangularis (BA 45; p = 0.02; OR 6.8). AOS and risk of aspiration are associated in patients with acute left hemisphere stroke. Acute infarct in the pars opercularis of Broca's area is associated with both deficits, though they rarely co-occur in the same individual. The co-occurrence of AOS and risk of aspiration likely reflects dependence on closely related neural structures.

Keywords: Apraxia of speech; Aspiration; Broca’s area; Deglutition; Deglutition disorders; Dysphagia; Stroke; Swallowing.

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Conflict of interest statement

Conflict of interest The authors have no conflict of interest to disclose.

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References

    1. Hamdy S, Mikulis DJ, Crawley A, Xue S, Lau H, Henry S, Diamant NE. Cortical activation during human volitional swallowing: an event-related fMRI study. Am J Physiol Gastrointest Liver Physiol 1999;277:G219–25. - PubMed
    1. Mosier KM, Liu WC, Maldjian JA, Shah R, Modi B. Lateralization of cortical function in swallowing: a functional MR imaging study. AJNR Am J Neuroradiol 1999;20:1520–6. - PMC - PubMed
    1. Hamdy S, Rothwell JC, Brooks DJ, Bailey D, Aziz Q, Thompson DG. Identification of the cerebral loci processing human swallowing with H2(15)O PET activation. J Neurophysiol 1999;81:1917–26. - PubMed
    1. Fellows LK, Heberlein AS, Morales DA, Shivde G, Waller S, Wu DH. Method matters: an empirical study of impact in cognitive neuroscience. J Cogn Neurosci 2005;17:850–8. - PubMed
    1. Schoenfeld MA, Noesselt T, Poggel D, Tempelmann C, Hopf J,Woldorff MG, Heinze H, Hillyard SA. Analysis of pathways mediating preserved vision after striate cortex lesions. Ann Neurol 2002;52:814–24. - PubMed

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