Related Experiment Video
Updated: Apr 24, 2026

Network Analysis of the Default Mode Network Using Functional Connectivity MRI in Temporal Lobe Epilepsy
Published on: August 5, 2014
Disrupted topological properties of brain white matter networks in left temporal lobe epilepsy: a diffusion tensor
1Center for the Study of Applied Psychology, Key Laboratory of Mental Health and Cognitive Science of Guangdong Province, School of Psychology, South China Normal University, Guangzhou 510631, PR China.
Abstract:
Mesial temporal lobe epilepsy (mTLE) is the most common drug-refractory focal epilepsy in adults. Although previous functional and morphological studies have revealed abnormalities in the brain networks of mTLE, the topological organization of the brain white matter (WM) networks in mTLE patients is still ambiguous. In this study, we constructed brain WM networks for 14 left mTLE patients and 22 age- and gender-matched normal controls using diffusion tensor tractography and estimated the alterations of network properties in the mTLE brain networks using graph theoretical analysis. We found that networks for both the mTLE patients and the controls exhibited prominent small-world properties, suggesting a balanced topology of integration and segregation. However, the brain WM networks of mTLE patients showed a significant increased characteristic path length but significant decreased global efficiency, which indicate a disruption in the organization of the brain WM networks in mTLE patients. Moreover, we found significant between-group differences in the nodal properties in several brain regions, such as the left superior temporal gyrus, left hippocampus, the right occipital and right temporal cortices. The robustness analysis showed that the results were likely to be consistent for the networks constructed with different definitions of node and edge weight. Taken together, our findings may suggest an adverse effect of epileptic seizures on the organization of large-scale brain WM networks in mTLE patients.
Insights
Mesial temporal lobe epilepsy (mTLE) disrupts brain white matter networks, showing reduced global efficiency and altered nodal properties. These findings suggest seizures adversely impact brain network organization in mTLE patients.
Area of Science:
- Neuroscience
- Epilepsy Research
- Brain Network Analysis
Background:
- Mesial temporal lobe epilepsy (mTLE) is a common cause of drug-resistant epilepsy in adults.
- Previous studies indicate brain network abnormalities in mTLE, but white matter (WM) network topology remains unclear.
Purpose of the Study:
- To investigate the topological organization of brain WM networks in mTLE patients.
- To identify alterations in network properties using graph theoretical analysis.
Main Methods:
- Constructed brain WM networks using diffusion tensor tractography in 14 left mTLE patients and 22 controls.
- Applied graph theoretical analysis to estimate network property alterations.
- Performed robustness analysis with varying node and edge weight definitions.
Main Results:
- Both mTLE patients and controls exhibited small-world network properties.
- mTLE patients showed increased characteristic path length and decreased global efficiency in WM networks.
- Significant differences in nodal properties were observed in regions including the left superior temporal gyrus and left hippocampus.
Conclusions:
- Brain WM networks in mTLE patients display disrupted topological organization compared to controls.
- Epileptic seizures may adversely affect the large-scale brain WM network organization in mTLE.

