Literature DB >> 26360535

Segmentation of the thalamus based on BOLD frequencies affected in temporal lobe epilepsy.

Victoria L Morgan1, Baxter P Rogers1, Bassel Abou-Khalil2.   

Abstract

OBJECTIVE: Temporal lobe epilepsy is associated with functional changes throughout the brain, particularly including a putative seizure propagation network involving the hippocampus, insula, and thalamus. We identified a specified frequency range where functional connectivity in this network was related to duration of disease. Then, to identify specific thalamic nuclei involved in seizure propagation, we determined the subregions of the thalamus that have increased resting functional oscillations in this frequency range.
METHODS: Resting-state functional magnetic resonance imaging (fMRI) was acquired from 20 patients with unilateral temporal lobe epilepsy (TLE; 14 right and 6 left) and 20 healthy controls who were each age and gender matched to a specific patient. Wavelet-based fMRI connectivity mapping across the network was computed at each frequency to determine those frequencies where connectivity significantly decreases with duration of disease consistent with impairment due to repeated seizures. The voxel-wise power of the spontaneous blood oxygenation fluctuations of this frequency band was computed in the thalamus of each subject.
RESULTS: Functional connectivity was impaired in the proposed seizure propagation network over a specific range (0.0067-0.013 Hz and 0.024-0.032 Hz) of blood oxygenation oscillations. Increased power in this frequency band (<0.032 Hz) was detected bilaterally in the pulvinar and anterior nucleus of the thalamus of healthy controls, and was increased over the ipsilateral thalamus compared to the contralateral thalamus in TLE. SIGNIFICANCE: This study identified frequencies of impaired connectivity in a TLE seizure propagation network and used them to localize the anterior nucleus and pulvinar of the thalamus as subregions most susceptible to TLE seizures. Further examinations of these frequencies in healthy and TLE subjects may provide unique information relating to the mechanism of seizure propagation and potential treatment using electrical stimulation. Wiley Periodicals, Inc.
© 2015 International League Against Epilepsy.

Entities:  

Keywords:  Functional neuroimaging; Temporal lobe epilepsy; Thalamus; fMRI

Mesh:

Year:  2015        PMID: 26360535      PMCID: PMC4626388          DOI: 10.1111/epi.13186

Source DB:  PubMed          Journal:  Epilepsia        ISSN: 0013-9580            Impact factor:   5.864


  45 in total

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Authors:  Dominique S Rosenberg; François Mauguière; Geneviève Demarquay; Philippe Ryvlin; Jean Isnard; Catherine Fischer; Marc Guénot; Michel Magnin
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5.  Involvement of the thalamocortical network in TLE with and without mesiotemporal sclerosis.

Authors:  Susanne G Mueller; Kenneth D Laxer; Jerome Barakos; Ian Cheong; Daniel Finlay; Paul Garcia; Valerie Cardenas-Nicolson; Michael W Weiner
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6.  Frequency specificity of functional connectivity in brain networks.

Authors:  Changwei W Wu; Hong Gu; Hanbing Lu; Elliot A Stein; Jyh-Horng Chen; Yihong Yang
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7.  Cortical and subcortical networks in human secondarily generalized tonic-clonic seizures.

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8.  Impaired and facilitated functional networks in temporal lobe epilepsy.

Authors:  Luigi Maccotta; Biyu J He; Abraham Z Snyder; Lawrence N Eisenman; Tammie L Benzinger; Beau M Ances; Maurizio Corbetta; R Edward Hogan
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9.  Thalamotemporal impairment in temporal lobe epilepsy: a combined MRI analysis of structure, integrity, and connectivity.

Authors:  Simon S Keller; Jonathan O'Muircheartaigh; Catherine Traynor; Karren Towgood; Gareth J Barker; Mark P Richardson
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10.  Thalamic functional connectivity predicts seizure laterality in individual TLE patients: application of a biomarker development strategy.

Authors:  Daniel S Barron; Peter T Fox; Heath Pardoe; Jack Lancaster; Larry R Price; Karen Blackmon; Kristen Berry; Jose E Cavazos; Ruben Kuzniecky; Orrin Devinsky; Thomas Thesen
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7.  Comparison of topological properties of functional brain networks with graph theory in temporal lobe epilepsy with different duration of disease.

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8.  Characterization of Hippocampal-Thalamic-Cortical Morphometric Reorganization in Temporal Lobe Epilepsy.

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9.  Economic evaluation of deep brain stimulation compared with vagus nerve stimulation and usual care for patients with refractory epilepsy: A lifetime decision analytic model.

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10.  Bilateral stereotactic lesions and chronic stimulation of the anterior thalamic nuclei for treatment of pharmacoresistant epilepsy.

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