首页> 外文期刊>Epilepsia: Journal of the International League against Epilepsy >Interregional metabolic connectivity of 2‐deoxy‐2[ 18 18 F]fluoro‐D‐glucose positron emission tomography in vagus nerve stimulation for pediatric patients with epilepsy: A retrospective cross‐sectional study
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Interregional metabolic connectivity of 2‐deoxy‐2[ 18 18 F]fluoro‐D‐glucose positron emission tomography in vagus nerve stimulation for pediatric patients with epilepsy: A retrospective cross‐sectional study

机译:2-DEOXY-2的区域间代谢连通性[1818 f]迷住癫痫小儿患者迷走神经刺激的荧光-d-葡萄糖正电子扫描:回顾性横截面研究

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Summary Objective With the recognition of epilepsy as a network disease that disrupts the organizing ability of resting‐state brain networks, vagus nerve stimulation ( VNS ) may control epileptic seizures through modulation of functional connectivity. We evaluated preoperative 2‐deoxy‐2[ 18 F]fluoro‐D‐glucose (FDG) positron emission tomography ( PET ) in VNS ‐implanted pediatric patients with refractory epilepsy to analyze the metabolic connectivity of patients and its prognostic role in seizure control. Methods Preoperative PET data of 66 VNS pediatric patients who were followed up for a minimum of 1?year after the procedure were collected for the study. Retrospective review of the patients’ charts was performed, and five patients with inappropriate PET data or major health issues were excluded. We conducted an independent component analysis of FDG ‐ PET to extract spatial metabolic components and their activities, which were used to perform cross‐sectional metabolic network analysis. We divided the patients into VNS ‐effective and VNS ‐ineffective groups ( VNS ‐effective group, ≥50% seizure reduction; VNS ‐ineffective group, 50% reduction) and compared metabolic connectivity differences between groups using a permutation test. Results Thirty‐four (55.7%) patients showed 50% seizure reduction from baseline frequency 1?year after VNS . A significant difference in metabolic connectivity evaluated by preoperative FDG ‐ PET was noted between groups. Relative changes in glucose metabolism were strongly connected among the areas of brainstem, cingulate gyrus, cerebellum, bilateral insula, and putamen in patients with 50% seizure control after VNS . Significance This study shows that seizure outcome of VNS may be influenced by metabolic connectivity, which can be obtained from preoperative PET imaging. This study of metabolic connectivity analysis may contribute in further understanding of the mechanism of VNS in intractable seizures.
机译:发明内容目的鉴于癫痫作为一种扰乱休息状态脑网络的组织能力的网络疾病,迷走神经刺激(VNS)可以通过调节功能连通性来控制癫痫发作。我们评估了VNS-implanted患者的术前2-脱氧-2 [18 f]氟-d-葡萄糖(FDG)正电子发射断层扫描(PET),耐火性癫痫,分析患者的代谢连通性及其在癫痫管道中的预后作用。方法术前宠物数据66名vns儿科患者,在该研究收集程序后至少为1岁对患者的图表进行了回顾性审查,并排除了五名不适当的宠物数据或主要健康问题的患者。我们对FDG - PET进行了独立的分量分析,以提取空间代谢组分及其活动,用于执行横截面代谢网络分析。我们将患者分为VNS-esefcentive和VNS-inffective群(VNS-yefercentive群,≥50%癫痫发作; VNS -ineffective Group,< 50%的降低),并使用排列测试比较组之间的代谢连接差异。结果34例(55.7%)患者显示&从基线频率减少50%的癫痫发作量1?vns之后的一年。在组之间注意到通过术前FDG - PET评价的代谢连通性的显着差异。血糖代谢的相对变化在脑干地区,刺痛的血管,小脑,双侧肠溶和腐败的患者中的脑干区域中强烈连接。本研究的意义表明VNS的癫痫发作结果可能受代谢连通性的影响,这可以从术前宠物成像中获得。该研究的代谢连接分析可能在进一步了解顽固癫痫发作中VNS的机制。

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