White matter signals reflect information transmission between brain regions during seizures
Andrew Y Revell1,2, Marc Jaskir1,2, Alfredo Lucas2,3
1Department of Neuroscience, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Abstract:
The white matter of the brain is a dynamic and active tissue that coordinates brain function through the transmission and modulation of information between regions via action potentials. Although scientific and clinical interest in studying white matter via diffusion imaging has grown rapidly, an electrophysiological understanding of white matter in healthy and disease states remains elusive. And although human white matter recordings are acquired in intracranial EEG studies in epilepsy, clinical evaluation typically focuses on grey matter structures to understand seizure generation and plan surgical intervention despite the role of white matter in coordinating and propagating epileptic activity. Here, we study white matter recordings in 29 patients with drug-resistant epilepsy who underwent stereo EEG for surgical evaluation. We elucidate properties of both electrical activity and network connectivity within white matter and its relationship to cortical connectivity. We also integrate tractography and stereo EEG recordings to demonstrate that our observed white matter dynamics reflect underlying structural connectivity patterns between grey matter structures, emphasizing the role of white matter in information transmission during seizures. Finally, we find that increased white matter connectivity to the presumed seizure onset zone is associated with poor surgical outcome after epilepsy surgery. Our findings support the distributed epileptic network hypothesis, which states that the true seizure onset zone is not a single focal anatomical location per se (in some cases), but rather a distributed epileptic network where many brain regions interact together, allowing a patient to enter a seizure state. Therefore, we propose that white matter electrophysiology and connectivity might represent information on the spatial distribution of epilepsy and thus its amenability to intervention, whether through focal ablation or modulation through devices. Overall, white matter functional recordings might provide a wealth of currently untapped knowledge about the neurobiology of disease and could guide clinical decision-making in treatment of drug-resistant epilepsy patients.
More Related Videos
08:20Brain Source Imaging in Preclinical Rat Models of Focal Epilepsy using High-Resolution EEG Recordings
Published on: June 6, 2015
08:23A Multimodal Imaging- and Stimulation-based Method of Evaluating Connectivity-related Brain Excitability in Patients with Epilepsy
Published on: November 13, 2016
Related Concept Videos
Seizures: Classification
Seizures are typically classified into two main categories: focal and generalized seizures.
Focal Seizures
Focal seizures originate from specific regions of the brain. These seizures are further sub-classified into two types:
Epilepsy and Seizures: Overview
Various factors can trigger epilepsy, including genetic factors, brain damage, metabolic causes, and unknown etiology. Diagnosis of epilepsy involves electroencephalography (EEG), which...
Overview of Synapses
Brain Waves
Neurons as Communicators of the Brain
Cell Body
The cell body, also known...
