Literature DB >> 31099821

Characterizing the role of the structural connectome in seizure dynamics.

Preya Shah1,2, Arian Ashourvan1,2, Fadi Mikhail2,3, Adam Pines4, Lohith Kini1,2, Kelly Oechsel2,3, Sandhitsu R Das3, Joel M Stein5, Russell T Shinohara6, Danielle S Bassett1,2,3,7,8, Brian Litt1,2,3, Kathryn A Davis2,3.   

Abstract

How does the human brain's structural scaffold give rise to its intricate functional dynamics? This is a central question in translational neuroscience that is particularly relevant to epilepsy, a disorder affecting over 50 million subjects worldwide. Treatment for medication-resistant focal epilepsy is often structural-through surgery or laser ablation-but structural targets, particularly in patients without clear lesions, are largely based on functional mapping via intracranial EEG. Unfortunately, the relationship between structural and functional connectivity in the seizing brain is poorly understood. In this study, we quantify structure-function coupling, specifically between white matter connections and intracranial EEG, across pre-ictal and ictal periods in 45 seizures from nine patients with unilateral drug-resistant focal epilepsy. We use high angular resolution diffusion imaging (HARDI) tractography to construct structural connectivity networks and correlate these networks with time-varying broadband and frequency-specific functional networks derived from coregistered intracranial EEG. Across all frequency bands, we find significant increases in structure-function coupling from pre-ictal to ictal periods. We demonstrate that short-range structural connections are primarily responsible for this increase in coupling. Finally, we find that spatiotemporal patterns of structure-function coupling are highly stereotyped for each patient. These results suggest that seizures harness the underlying structural connectome as they propagate. Mapping the relationship between structural and functional connectivity in epilepsy may inform new therapies to halt seizure spread, and pave the way for targeted patient-specific interventions.
© The Author(s) (2019). Published by Oxford University Press on behalf of the Guarantors of Brain. All rights reserved. For Permissions, please email: journals.permissions@oup.com.

Entities:  

Keywords:  epilepsy; functional connectivity; high-angular resolution diffusion imaging; intracranial EEG; structural connectivity

Mesh:

Year:  2019        PMID: 31099821      PMCID: PMC6598625          DOI: 10.1093/brain/awz125

Source DB:  PubMed          Journal:  Brain        ISSN: 0006-8950            Impact factor:   13.501


  115 in total

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3.  Predicting human resting-state functional connectivity from structural connectivity.

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Journal:  Proc Natl Acad Sci U S A       Date:  2009-02-02       Impact factor: 11.205

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6.  Altered functional-structural coupling of large-scale brain networks in idiopathic generalized epilepsy.

Authors:  Zhiqiang Zhang; Wei Liao; Huafu Chen; Dante Mantini; Ju-Rong Ding; Qiang Xu; Zhengge Wang; Cuiping Yuan; Guanghui Chen; Qing Jiao; Guangming Lu
Journal:  Brain       Date:  2011-10       Impact factor: 13.501

Review 7.  Refractory epilepsy: clinical overview.

Authors:  Jacqueline A French
Journal:  Epilepsia       Date:  2007       Impact factor: 5.864

Review 8.  Definition of the postictal state: when does it start and end?

Authors:  Robert S Fisher; Jerome J Engel
Journal:  Epilepsy Behav       Date:  2010-08-07       Impact factor: 2.937

9.  Nodular heterotopia: a neuropathological study of 24 patients undergoing surgery for drug-resistant epilepsy.

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Journal:  BMC Neurosci       Date:  2009-06-02       Impact factor: 3.288

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Authors:  Arian Ashourvan; Preya Shah; Adam Pines; Shi Gu; Christopher W Lynn; Danielle S Bassett; Kathryn A Davis; Brian Litt
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2.  Multiple sources of fast traveling waves during human seizures: resolving a controversy.

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3.  Diffusion tractography predicts propagated high-frequency activity during epileptic spasms.

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5.  Time-evolving controllability of effective connectivity networks during seizure progression.

Authors:  Brittany H Scheid; Arian Ashourvan; Jennifer Stiso; Kathryn A Davis; Fadi Mikhail; Fabio Pasqualetti; Brian Litt; Danielle S Bassett
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6.  Control theory illustrates the energy efficiency in the dynamic reconfiguration of functional connectivity.

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7.  Drug-resistant focal epilepsy in children is associated with increased modal controllability of the whole brain and epileptogenic regions.

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8.  High interictal connectivity within the resection zone is associated with favorable post-surgical outcomes in focal epilepsy patients.

Authors:  Preya Shah; John M Bernabei; Lohith G Kini; Arian Ashourvan; Jacqueline Boccanfuso; Ryan Archer; Kelly Oechsel; Sandhitsu R Das; Joel M Stein; Timothy H Lucas; Danielle S Bassett; Kathryn A Davis; Brian Litt
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9.  Optimization of epilepsy surgery through virtual resections on individual structural brain networks.

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10.  A framework For brain atlases: Lessons from seizure dynamics.

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Journal:  Neuroimage       Date:  2022-03-23       Impact factor: 7.400

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