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内侧和外侧颞叶癫痫之间代谢异常的差异特征:使用统计参数映射(SPM)对(18)F-FDG PET进行定量分析

Differential features of metabolic abnormalities between medial and lateral temporal lobe epilepsy: quantitative analysis of (18)F-FDG PET using SPM.

作者信息

Kim Yu Kyeong, Lee Dong Soo, Lee Sang Kun, Kim Seok-Ki, Chung Chun Kee, Chang Ki Hyun, Choi Ki Young, Chung June-Key, Lee Myung Chul

机构信息

Department of Nuclear Medicine, Seoul National University, College of Medicine, Seoul, Korea.

出版信息

J Nucl Med. 2003 Jul;44(7):1006-12.

Abstract

UNLABELLED

Because limited resection could yield an equally good surgical outcome as standard anterior resection in temporal lobe epilepsy (TLE), the differentiation of medial from lateral TLE is important. We tried to find the differential features in metabolic abnormalities between medial and lateral TLE groups using quantitative analysis including statistical parametric mapping (SPM).

METHODS

We examined 113 (18)F-FDG PET scans of TLE patients who had surgically and pathologically proven lesions and a good surgical outcome (78 medial TLE, 35 lateral TLE). Each scan was compared with those of 22 healthy control subjects to detect hypometabolic regions using a t test of the SPM method and interhemispheric asymmetry using 2-group, 2-condition analysis on SPM. Group analysis was performed between medial and lateral TLE using mirrored PET images. The sensitivity was defined as the detection rate of hypometabolism in the ipsilateral temporal lobes, and the specificity was defined as the nondetection rate in the contralateral lobes. The extent of the hypometabolism was calculated as the number of significant voxels, and the severity was calculated by the asymmetry index (ASI), in the medial or lateral temporal lobes on Statistical Probabilistic Anatomical Map template images.

RESULTS

The hypometabolism in the temporal lobes was detected ipsilateral to the seizure focus in 76% of the TLE patients (76% in medial TLE, 77% in lateral TLE) but on the contralateral temporal lobes in 32% of the patients. After considering interhemispheric temporal asymmetry, the sensitivity was found to be 89%, and the specificity was 91% without differences between the medial and lateral TLE groups. In both medial and the lateral TLE, the hypometabolism was more prominent in the lateral cortical structures than in the medial structures. The hypometabolism in the medial temporal structures was found less frequently in the lateral TLE group, and the extent of the hypometabolism was significantly larger in the medial TLE group. ASIs of the medial temporal structure and superior temporal gyrus of lateral temporal structure were significantly higher in the medial TLE.

CONCLUSION

SPM analysis of (18)F-FDG PET in TLE patients could localize accurately the seizure focus and helped in the discrimination of the medial TLE from the lateral TLE. We suggest the lateral TLE, rather than the medial TLE, should be considered when glucose metabolism is relatively preserved in the medial temporal structures.

摘要

未标注

由于在颞叶癫痫(TLE)中,有限切除与标准前颞叶切除的手术效果相当,因此区分内侧型与外侧型TLE很重要。我们试图通过包括统计参数映射(SPM)在内的定量分析,找出内侧型和外侧型TLE组代谢异常的差异特征。

方法

我们检查了113例经手术和病理证实有病变且手术效果良好的TLE患者的(18)F-FDG PET扫描(78例内侧型TLE,35例外侧型TLE)。将每次扫描与22名健康对照者的扫描进行比较,使用SPM方法的t检验检测低代谢区域,并使用SPM的两组两条件分析检测半球间不对称性。使用镜像PET图像在内侧型和外侧型TLE之间进行组分析。敏感性定义为同侧颞叶低代谢的检出率,特异性定义为对侧颞叶未检出率。低代谢范围通过显著体素数量计算,严重程度通过统计概率解剖图谱模板图像上内侧或外侧颞叶的不对称指数(ASI)计算。

结果

76%的TLE患者在癫痫病灶同侧颞叶检测到低代谢(内侧型TLE为76%,外侧型TLE为77%),但32%的患者在对侧颞叶检测到低代谢。考虑半球间颞叶不对称性后,发现敏感性为89%,特异性为91%,内侧型和外侧型TLE组之间无差异。在内侧型和外侧型TLE中,外侧皮质结构的低代谢比内侧结构更明显。外侧型TLE组内侧颞叶结构的低代谢较少见,内侧型TLE组低代谢范围明显更大。内侧型TLE中,内侧颞叶结构和外侧颞叶结构颞上回的ASI显著更高。

结论

对TLE患者进行(18)F-FDG PET的SPM分析可准确确定癫痫病灶位置,并有助于区分内侧型TLE与外侧型TLE。我们建议当内侧颞叶结构葡萄糖代谢相对保留时,应考虑外侧型TLE而非内侧型TLE。

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