Decreased Structural Connectivity Between Thalamic Nuclei and Hippocampus in Temporal Lobe Epilepsy—A Diffusion Tensor Imaging-Based Study

IF 4.5 2区 医学 Q1 CLINICAL NEUROLOGY
Mehmet S. Yildirim, Radheshyam Stepponat, Florian Ph. S. Fischmeister, Matthias Tomschik, Victor Schmidbauer, Farjad Khalaveh, Johannes Koren, Christoph Baumgartner, Ekaterina Pataraia, Silvia Bonelli, Karl Rössler, Gregor Kasprian, Christian Dorfer
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Abstract

Background

Temporal lobe epilepsy (TLE) can lead to structural brain abnormalities, with thalamus atrophy being the most common extratemporal alteration. This study used probabilistic tractography to investigate the structural connectivity between individual thalamic nuclei and the hippocampus in TLE.

Methods

Thirty-six TLE patients who underwent pre-surgical 3 Tesla magnetic resonance imaging (MRI) and 18 healthy controls were enrolled in this study. Patients were subdivided into TLE with HS (TLE-HS) and MRI-negative TLE (TLE-MRneg). Tractography and whole brain segmentation, including thalamus parcellation, were performed to determine the number of streamlines per mm3 between the thalamic nuclei and hippocampus. Connectivity strength and volume of regions were correlated with clinical data.

Results

The volume of the entire thalamus ipsilateral to seizure onset was significantly decreased in TLE-HS compared to controls (Mann–Whitney-U test: pFDR < 0.01) with the anterior thalamic nuclei (ANT) as important contributor. Furthermore, decreased ipsilateral connectivity strength between the hippocampus and ANT was detected in TLE-HS (pFDR < 0.01) compared to TLE-MRneg and controls which correlated negatively with the duration of epilepsy (ρ = −0.512, p = 0.025) and positively with seizure frequency (ρ = 0.603, p = 0.006). Moreover, ANT volume correlated negatively with epilepsy duration in TLE-HS (ρ = −0.471, p = 0.042).

Conclusions

ANT showed atrophy and decreased connectivity in TLE-HS, which correlated with epilepsy duration and seizure frequency. Understanding the dynamics of epileptogenic networks has the potential to shed light on surgery-resistant epilepsy and refine the selection process for ideal neurosurgical candidates, consequently enhancing post-surgical outcomes.

Abstract Image

颞叶癫痫患者丘脑核与海马结构连通性下降——基于弥散张量成像的研究。
背景:颞叶癫痫(TLE)可导致大脑结构异常,丘脑萎缩是最常见的颞外改变。本研究采用概率神经束造影的方法研究了颞叶颞叶痴呆患者个体丘脑核与海马之间的结构连通性。方法:选取36例术前行3次特斯拉磁共振成像(MRI)检查的TLE患者和18例健康对照者进行研究。将患者细分为伴HS的TLE (TLE-HS)和mri阴性TLE (TLE- mrneg)。通过神经束造影和全脑分割(包括丘脑分割)来确定丘脑核和海马之间每mm3流线的数量。连接强度和区域体积与临床数据相关。结果:与对照组相比,TLE-HS患者癫痫发作同侧的整个丘脑体积显著减少(Mann-Whitney-U检验:pFDR FDR结论:ANT在TLE-HS中表现为萎缩和连通性下降,这与癫痫持续时间和发作频率相关。了解致癫痫网络的动态有可能阐明手术抵抗性癫痫,并改进理想神经外科候选人的选择过程,从而提高术后疗效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
European Journal of Neurology
European Journal of Neurology 医学-临床神经学
CiteScore
9.70
自引率
2.00%
发文量
418
审稿时长
1 months
期刊介绍: The European Journal of Neurology is the official journal of the European Academy of Neurology and covers all areas of clinical and basic research in neurology, including pre-clinical research of immediate translational value for new potential treatments. Emphasis is placed on major diseases of large clinical and socio-economic importance (dementia, stroke, epilepsy, headache, multiple sclerosis, movement disorders, and infectious diseases).
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