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Dipole localization of human induced focal afterdischarge seizure in simultaneous magnetoencephalography and electrocorticography.

机译:同时磁脑电图和皮层脑电图中人诱发的局部放电后癫痫发作的偶极定位。

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摘要

Localizations were compared for the same human seizure between simultaneously measured MEG and iEEG, which were both co-registered to MRI. The whole-cortex neuromagnetometer localized a dipole in a sphere phantom, co-registered to the MEG sensor array, with an error of 1.4 mm. A focal afterdischarge seizure was induced in a patient with partial epilepsy, by stimulation at a subdural electrocorticography (ECoG) electrode with a known location, which was co-registered to the MRI and to the MEG sensor array. The simultaneous MEG and ECoG during the 30-second seizure was measured and analyzed using the single, moving dipole model, which is the localization model used clinically. The dipole localizations from simultaneous whole cortex 68-channel MEG and 64-channel ECoG were then compared for the repetitive spiking at six different times during the seizure. There were two main regions of MEG and ECoG activity. The locations of these regions were confirmed by determining the location clusters of 8,000 dipoles on ECoG at consecutive time points during the seizure. The mean distances between the stimulated electrode location versus the dipole location of the MEG and versus the dipole location of the ECoG were each about one (1) centimeter. The mean distance between the dipole locations of the MEG versus the dipole locations of the ECoG was about 2 cm. These errors were compared to errors of MEG and ECoG reported previously for phantoms and for somatosensory evoked responses (SER) in patients. Comparing the findings from the present study to those from prior studies, there appeared to be the expected stepwise increase in mean localization error progressing from the phantom, to the SER, to the seizure.
机译:在同时测量的MEG和iEEG之间比较了相同的癫痫发作的定位,这两个都共同注册了MRI。全皮质神经磁强计在球体模型中定位了一个偶极子,该偶极子与MEG传感器阵列共配准,误差为1.4 mm。在部分癫痫患者中,通过在已知位置的硬脑膜下皮层脑电图(ECoG)电极上进行刺激来诱发局灶性放电后癫痫发作,该电极已与MRI和MEG传感器阵列共同配准。使用单个移动偶极子模型(在临床上使用的定位模型)测量并分析了发作30秒期间同时发生的MEG和ECoG。然后比较癫痫发作期间在六个不同时间重复同时出现的整个皮质68通道MEG和64通道ECoG的偶极子定位。 MEG和ECoG活性有两个主要区域。通过确定癫痫发作期间连续时间点在ECoG上的8,000个偶极子的位置簇来确认这些区域的位置。受激电极位置与MEG的偶极位置之间以及ECoG的偶极位置之间的平均距离分别约为一(1)厘米。 MEG的偶极子位置与ECoG的偶极子位置之间的平均距离约为2 cm。将这些错误与先前报道的患者体模和体感诱发反应(SER)的MEG和ECoG错误进行了比较。将本研究的结果与先前的研究结果进行比较,似乎预期从幻影到SER到癫痫发作的平均定位误差会逐步增加。

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