Aug 2026· Magnetic Resonance Letters· Vol 7, pp. 200307· 0 citations· 62 references
Medicine
TL;DR
These findings provide a structurally informed framework for characterizing pathway-level language network alterations in left-hemispheric AVMs, with exploratory clinical relevance for studying compensatory language organization.
Abstract
Structure and function changes of language function processing in brain arteriovenous malformations (AVMs) have been investigated, while the alterations of brain connectivity remain unexplored. This study aims to investigate language network reorganization in AVMs using fiber-based regional functional connectivity (FBRFC), which integrates structural and functional information. 34 right-handed patients with left-hemispheric AVMs and 27 healthy controls underwent task-based functional magnetic resonance imaging during three language paradigms: visual synonym judgment, oral word reading, and auditory sentence comprehension. Conventional whole-brain analysis was used for comparison, and patients were categorized into three subgroups to assess lesion location effects on language reorganization. In the oral word reading task, AVMs exhibited significantly increased FBRFC compared to controls in right-hemisphere language-related fiber tracts, including the anterior thalamic radiation, inferior fronto-occipital fasciculus, inferior longitudinal fasciculus, superior longitudinal fasciculus, superior longitudinal fasciculus temporal part, as well as in bilateral cingulum hippocampus, cingulum cingulate gyrus, and the interhemispheric forceps major. No significant difference was detected in the visual and auditory tasks. Frontal and parietal lesion impairment subgroups demonstrated compensatory FBRFC elevations during the oral task, whereas only the parietal subgroup showed such increase during the auditory task. Conventional FC analysis revealed enhanced FC between the frontal and occipital regions during the oral task, between the parietal and cerebellar regions during the auditory task. These findings provide a structurally informed framework for characterizing pathway-level language network alterations in left-hemispheric AVMs, with exploratory clinical relevance for studying compensatory language organization.
Brain asymmetry of structure and function, which is critical for high-level cognitive abilities, is influenced by the information received and processed in the two hemispheres. Single-sided deafness (SSD) is a prevalent clinical condition, representing an extreme case of partial sensory deprivation. However, how unilat...
Sai-Yi Jiao, Yu-Fei Qiao, Qiao-Yu Liu et al.· NeuroImage· 0 citations
Dynamic resting-state features tracked individual variation in language lateralization despite limited group-level differences in dynamic state usage, providing proof-of-concept evidence of brain-behavior coupling rather than an AVM-specific dynamic biomarker or a validated clinical prediction tool.
D. DiGiovanni, J.-K. Chen, D. Tampieri et al.· medRxiv· 0 citations
MRI is an excellent tool for monitoring functional and structural network reorganization after brain injury and may provide biomarkers for treatment stratification and novel neuromodulatory interventions. In ischemic stroke, functional network changes, particularly within the contralesional hemisphere, and structural i...
F. Mahani, G. R. Fink, M. Hoehn et al.· bioRxiv· 0 citations
BACKGROUND
Language processing is organized in brain networks, generally lateralized to the left hemisphere. In clinical routine, task-based functional MRI (fMRI) is the gold standard for non-invasive evaluation of language lateralization. However, standard fMRI does not account for the individual heterogeneity of lang...
R. Stepponat, Mehmet-Salih Yildirim, M. Berger et al.· Clinical Neuroradiology· 0 citations
OBJECTIVE
Clinical mapping studies in epilepsy and brain tumor surgery have informed neurobiological models of speech. However, a comprehensive model requires clarification of when, for how long, and in what directions cortical regions transmit information to support processes ranging from perception and comprehension...
Ryuzaburo Kochi, Aya Kanno, Hiroshi Uda et al.· NeuroImage· 0 citations
The two hemispheres of the brain are strongly connected both structurally and functionally, and disruptions to interhemispheric communication can have significant cognitive and behavioral consequences. While alterations to interhemispheric structural and/or functional connectivity have been reported in many neurologica...
Y. Tao, K. Tsapkini, B. Rapp· NeuroImage: Clinical· 0 citations
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