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Network Analysis of the Default Mode Network Using Functional Connectivity MRI in Temporal Lobe Epilepsy
Published on: August 5, 2014
Frequency-specific network changes in mesial temporal lobe epilepsy: Analysis of chronic and transient dysfunctions
Tomotaka Ishizaki1,2, Satoshi Maesawa1,2,3, Takahiro Suzuki1
1Department of Neurosurgery, Nagoya University Graduate School of Medicine, Nagoya, Aichi, Japan.
Objective:
Mesial temporal lobe epilepsy (MTLE) is associated with disruptions in the temporo-amygdala-orbitofrontal (TAO) network, a key component of the limbic system. We aimed to investigate TAO network alterations in patients with MTLE using magnetoencephalography (MEG), which overcomes susceptibility artifacts that limit functional MRI analysis of the orbitofrontal cortex.
Methods:
Nine seizure-free patients with MTLE post-temporal lobectomy and nine age- and sex-matched healthy controls were recruited. Preoperative MEG data were collected and segmented into frequency bands ranging from delta to ripple to assess functional connectivity (FC) between the bilateral hippocampi and TAO network.
Results:
Patients with MTLE exhibited increased FC between the affected hippocampus and amygdala across all frequency bands. Additionally, FC between the affected hippocampus and the medial prefrontal cortex (mPFC), orbitofrontal gyrus (OFG), and amygdala was elevated in the gamma and ripple bands compared with healthy controls. Conversely, FC between the healthy hippocampus and mPFC decreased in the alpha and beta bands. Furthermore, FC within the TAO network fluctuated before and after epileptic spikes; there was a decrease in the delta band between the bilateral hippocampi and the amygdala, OFG, and thalamus, whereas FC between the hippocampus and mPFC increased in the alpha, beta, and ripple bands.
Significance:
These findings suggest the formation of an abnormal network involving the affected hippocampus and the TAO network, particularly in the gamma-ripple bands, indicating epilepsy-induced network disruptions. Reduced FC in the healthy hippocampus and the TAO network may reflect frontal lobe dysfunction related to emotion and cognition. Additionally, both chronic and transient FC changes observed via MEG may contribute to the cognitive and psychiatric impairments experienced by patients with MTLE. This study highlights the significance of frequency-specific network alterations in understanding MTLE's pathophysiology and its impact on limbic system functions.
Plain Language Summary:
In mesial temporal lobe epilepsy, there may be abnormal connectivity between the hippocampus and the limbic system, which is involved in memory, cognition, and emotion. The changes in connectivity observed using magnetoencephalography may be implicated in cognitive and psychiatric problems experienced by patients with mesial temporal lobe epilepsy. Examining disruptions in the connectivity across brain regions in relation to epileptic activity could further the understanding of the pathophysiology of this debilitating condition and its impact on behavioral and emotional functions, among others.
Insights
Mesial temporal lobe epilepsy (MTLE) involves abnormal connectivity within the temporo-amygdala-orbitofrontal (TAO) network. Magnetoencephalography (MEG) revealed altered functional connectivity (FC) in MTLE patients, potentially explaining cognitive and psychiatric issues.
Area of Science:
- Neuroscience
- Epileptology
- Brain Network Analysis
Background:
- Mesial temporal lobe epilepsy (MTLE) is characterized by disruptions in the temporo-amygdala-orbitofrontal (TAO) network, a critical part of the limbic system.
- Functional magnetic resonance imaging (fMRI) studies are limited in analyzing orbitofrontal cortex due to susceptibility artifacts.
Purpose of the Study:
- To investigate alterations in the TAO network in MTLE patients using magnetoencephalography (MEG).
- To assess functional connectivity (FC) between the hippocampus and TAO network across various frequency bands.
Main Methods:
- Recruited nine seizure-free MTLE patients post-temporal lobectomy and nine healthy controls.
- Collected preoperative MEG data, segmented into delta to ripple frequency bands.
- Assessed FC between bilateral hippocampi and the TAO network.
Main Results:
- MTLE patients showed increased FC between the affected hippocampus and amygdala across all frequency bands.
- Elevated FC in gamma and ripple bands between the affected hippocampus and medial prefrontal cortex (mPFC), orbitofrontal gyrus (OFG), and amygdala.
- Decreased FC between the healthy hippocampus and mPFC in alpha and beta bands; transient FC changes observed around epileptic spikes.
Conclusions:
- Findings suggest abnormal network formation involving the affected hippocampus and TAO network, particularly in gamma-ripple bands, indicating epilepsy-induced disruptions.
- Reduced FC in the healthy hippocampus and TAO network may signify frontal lobe dysfunction affecting emotion and cognition.
- MEG-observed chronic and transient FC changes may contribute to cognitive and psychiatric impairments in MTLE patients.
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