Center for Clinical Neurosciences and Neurological Research, St. Vincent's Hospital, Fitzroy, Victoria, Australia.
J Clin Neurophysiol. 2010 Jun;27(3):141-62. doi: 10.1097/WNP.0b013e3181dd5004.
The aim of this study is to characterize and compare dipole and distributed EEG source localization (ESL) of interictal epileptiform discharges (IEDs) in focal epilepsy. Single and averaged scalp IEDs from eight patients-four with benign focal epilepsy of childhood with centrotemporal spikes (BFEC) and four with mesial temporal lobe epilepsy (MTLE)-underwent independent component analysis (ICA) from IED onset to peak. The boundary element method forward model was applied to one of four inverse models: two dipolar-moving regularized, rotating nonregularized and two distributed-standardized low-resolution electromagnetic tomography with rotating cortical sources or with fixed extended sources. Solutions were studied at IED onset, midupswing, peak; ESL strength maxima; ESL residual deviation minima (best fit). From 11,040 ESL parameter points and 960 ESL maps, best-fit dipole and distributed solutions fell at the IED midupswing in BFEC and MTLE when the dominant ICA component typically peaked, localizing to the lower Rolandic sulcus in BFEC and to basolateral or anterior temporal cortex in MTLE. Single-to-averaged ESL variability was high in MTLE. Dipole and distributed ESL are complementary; best-fit solutions for both occupy the IED midupswing and not the IED peak. ICA, a "blind" statistical operation, aids clinical interpretation of ESL fit quality. Single-to-averaged IED localization discordance can be high, a problem warranting further scrutiny if ESL is to earn a place in routine epilepsy care.
本研究旨在对局灶性癫痫中发作间期癫痫样放电(IED)的偶极子和分布式脑电源定位(ESL)进行特征描述和比较。对 8 名患者(4 名良性局灶性癫痫伴中央颞区棘波(BFEC),4 名内侧颞叶癫痫(MTLE))的单发性和平均头皮 IED,从 IED 起始到峰值,进行独立成分分析(ICA)。边界元方法正向模型应用于四个逆模型中的一个:两个偶极子-移动正则化、旋转非正则化和两个分布式-标准化低分辨率电磁层析成像,旋转皮质源或固定扩展源。在 IED 起始、中升支、峰值;ESL 强度最大值;ESL 残差偏差最小值(最佳拟合)处研究了这些解决方案。从 11040 个 ESL 参数点和 960 个 ESL 图中,在 BFEC 和 MTLE 中,当主导 ICA 成分通常达到峰值时,最佳拟合偶极子和分布式解决方案出现在 IED 中升支,在 BFEC 中定位于 Rolandic 下沟,在 MTLE 中定位于基底外侧或前颞叶皮质。MTLE 中单发性到平均性 ESL 变异性较高。偶极子和分布式 ESL 是互补的;两者的最佳拟合解决方案都位于 IED 中升支,而不是 IED 峰值。ICA 是一种“盲”统计操作,有助于对 ESL 拟合质量进行临床解释。如果 ESL 要在常规癫痫护理中占有一席之地,则需要进一步仔细检查单发性到平均性 IED 定位不一致的问题。