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The Evaluation of Dynamic FDG-PET for Detecting Epileptic Foci and Analyzing Reduced Glucose Phosphorylation in Refractory Epilepsy

机译:动态FDG-PET检测难治性癫痫病灶并分析葡萄糖磷酸化还原的评估

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>Aims: Static fluorodeoxyglucose (FDG)-positron emission tomographic (PET) imaging plays an important role in the localization of epileptic foci. Dynamic FDG PET allows calculation of kinetic parameters. The aim of this study was to investigate whether kinetic parameters have potential for identifying epileptic foci, and to assess the correlation of parameters asymmetry indexes (ASYM) between dynamic and static FDG PET for understanding the pathophysiology of hypometabolism within intractable epilepsy.>Methods: Seventeen patients who had refractory epilepsy correctly localized by static FDG PET with good outcome after foci resection were included. Eight controls were also studied. We performed dynamic and static FDG PET scan before operation. Images of both scans were coregistered to the montreal neurological institute space, regional time activity curves and activity concentration (AC) were obtained by applying the automated anatomical labeling template to the two spatially normalized images, respectively. Kinetic parameters were obtained using a two-tissue non-reversible compartmental model with an image-derived input function. AC from the static scan was used. Side-to-side ASYM of both static AC and kinetic parameters were calculated and analyzed in the hypometabolic epileptogenic regions and non-epileptogenic regions.>Results: Higher values of ASYM from both kinetic parameters and static AC were found in the patients compared to the controls from epileptogenic regions. In the non-epileptogenic regions, no ASYM differences were seen between patients and controls for all parameters. In patients, static AC showed larger ASYM than influx (K1) and efflux (k2) of capillaries, but there were no statistical differences of ASYM between net metabolic flux (Ki) or the phosphorylation (k3) and static AC. ASYM of static AC positively correlated with ASYM of k3.>Conclusion: Dynamic FDG PET can provide equally effective in detecting the epileptic foci compared to static FDG PET in this small cohort. In addition, compared to capillary influx, the hypometabolism of epileptic foci may be related to reduced glucose phosphorylation.
机译:>目的:静态氟脱氧葡萄糖(FDG)-正电子发射断层扫描(PET)成像在癫痫灶的定位中起着重要作用。动态FDG PET可以计算动力学参数。这项研究的目的是调查动力学参数是否具有识别癫痫灶的潜力,并评估动态和静态FDG PET之间的参数不对称指数(ASYM)的相关性,以了解顽固性癫痫患者代谢不良的病理生理。>方法:纳入17例通过固定FDG PET正确定位的难治性癫痫病灶切除后效果良好的患者。还研究了八个对照。手术前我们进行了动态和静态FDG PET扫描。将两次扫描的图像共同注册到蒙特利尔神经病学研究所的空间,分别通过将自动解剖标记模板应用于两个空间标准化图像来获得区域时间活动曲线和活动浓度(AC)。动力学参数是使用具有图像输入功能的两组织不可逆隔室模型获得的。使用来自静态扫描的交流电。计算并分析了代谢不足的癫痫发生区和非癫痫发生区的静态AC和动力学参数的并排ASYM。>结果:发现动力学参数和静态AC都具有较高的ASYM值与来自癫痫发生区域的对照相比。在非癫痫发生区域,所有参数的患者和对照之间均未见ASYM差异。在患者中,静态AC显示的ASYM大于毛细血管的流入量(K1)和流出(k2),但净代谢通量(Ki)或磷酸化(k3)与静态AC之间的ASYM没有统计学差异。静态AC的ASYM与k3的ASYM正相关。>结论:在这个小队列研究中,与静态FDG PET相比,动态FDG PET在检测癫痫病灶方面同样有效。另外,与毛细血管涌入相比,癫痫灶的代谢不足可能与葡萄糖磷酸化减少有关。

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