4.7 Article

Temporal lobe white matter asymmetry and language laterality in epilepsy patients

期刊

NEUROIMAGE
卷 49, 期 3, 页码 2033-2044

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.neuroimage.2009.10.055

关键词

Diffusion tensor imaging; Language; Laterality; Wada (sodium Amytal) test; Arcuate fasciculus; Uncinate fasciculus; Inferior longitudinal fasciculus; Inferior occipitofrontal fasciculus; Handedness; Functional magnetic resonance imaging; Broca's area

资金

  1. National Center for Research Resources of the National Institutes of Health [UL1RR024148]
  2. NIH [S10 RR19186]

向作者/读者索取更多资源

Recent Studies using diffusion tensor imaging (DTI) have advanced our knowledge of the organization of while matter subserving language function It remains unclear, however, how DTI may be used to predict accurately a key feature of language organization its asymmetric representation in one cerebral hemisphere In this study of epilepsy patients with unambiguous lateralization on Wada testing ( 19 left and 4 right lateralized Subjects, no bilateral subjects), the predictive Value of DTI for- classifying tile dominant hemisphere for language was assessed relative to the existing standard-the intra-carotid Amytal (Wada) procedure Our specific hypothesis is that language laterality in both unilateral left- and right-hemisphere language dominant subjects may be predicted by hemispheric asymmetry in the relative density of three white matter pathways terminating in the temporal lobe implicated in different aspects of language function: the arcuate (AF). uncinate (UF). and inferior longitudinal fasciculi (ILF) Literality indices Computed from asymmetry of high anisotropy AF pathways, but not tile other pathways, classified the majority ( 19 of 23) of patients using the Wada results as the standard A logistic regression model incorporating information from DTI of the AF. fMRI activity in Broca's area, and handedness was able to classify 22 of 23 (95 6%) patients correctly according to their Wada score. We Conclude that evaluation of highly anisotropic components of the AF alone has significant predictive power for determining language laterality. and that this markedly asymmetric distribution in the dominant hemisphere may reflect enhanced connectivity between frontal and temporal sites to support fluent language processes. Given tile small sample reported in this preliminary study. future research should assess this method on a larger group of patients, Including Subjects with bi-hemispheric dominance (C) 2009 Elsevier Inc All rights reserved

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