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起源坐标对脑磁图中时间扩展信号空间分离性能的影响。

Origin coordinate influence on performance of temporally extended signal space separation in magnetoencephalography.

机构信息

Department of Clinical Laboratory, University of Tokyo Hospital, Tokyo, Japan.

Department of Clinical Laboratory, University of Tokyo Hospital, Tokyo, Japan.

出版信息

Clin Neurophysiol. 2024 Jul;163:143-151. doi: 10.1016/j.clinph.2024.04.020. Epub 2024 May 6.

Abstract

OBJECTIVE

Temporally extended signal space separation (tSSS) is a powerful method for artifact suppression in magnetoencephalography (MEG). Because tSSS first separates MEG signals coming from inside and outside a certain sphere, definition of the sphere origin is important. For this study, we explored the influence of origin choice on tSSS performance in spontaneous and evoked activity from epilepsy patients.

METHODS

Interictal epileptiform discharges (IEDs) and somatosensory evoked fields (SEFs) were processed with two tSSSs: one with the default origin of (0, 0, 40 mm) in the head coordinate, and the other with an individual origin estimated using each patient's anatomical magnetic resonance imaging (MRI). Equivalent current dipoles (ECDs) were calculated for the data. The ECD location and quality of estimation were compared across conditions.

RESULTS

MEG data from 21 patients revealed marginal differences in ECD location, but the estimation quality inferred from goodness of fit (GOF) and confidence volume (CV) was better for the tSSS with individual origins. This choice affected IEDs more than it affected SEFs.

CONCLUSIONS

Individual sphere model resulted in better GOF and CV.

SIGNIFICANCE

Application of tSSS using an individual origin would be more desirable when available. This parameter might influence spontaneous activity more strongly.

摘要

目的

时变扩展信号空间分离(tSSS)是一种强大的脑磁图(MEG)伪影抑制方法。因为 tSSS 首先分离来自某个球体内部和外部的 MEG 信号,所以球体原点的定义很重要。在这项研究中,我们探讨了原点选择对癫痫患者自发和诱发活动中 tSSS 性能的影响。

方法

使用两种 tSSS 处理发作间期癫痫样放电(IEDs)和体感诱发电位(SEFs):一种使用头部坐标中的默认原点(0,0,40mm),另一种使用每个患者的解剖磁共振成像(MRI)估计的个体原点。为数据计算等效电流偶极子(ECDs)。比较了条件下 ECD 的位置和估计质量。

结果

21 名患者的 MEG 数据显示 ECD 位置略有差异,但个体原点的 tSSS 推断出的拟合优度(GOF)和置信体积(CV)的估计质量更好。这种选择对 IED 的影响大于对 SEFs 的影响。

结论

个体球模型产生了更好的 GOF 和 CV。

意义

当可用时,使用个体原点的 tSSS 应用将更可取。该参数可能会对自发性活动产生更强的影响。

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