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通过磁源成像实现刺激性区域的自动定位。

Towards the Automatic Localization of the Irritative Zone Through Magnetic Source Imaging.

机构信息

Department of Neurophysiology and Diagnostic Epileptology, IRCCS Foundation Carlo Besta Neurological Institute, Milan, Italy.

Department of Mathematics, University of Genoa, Genoa, Italy.

出版信息

Brain Topogr. 2020 Sep;33(5):651-663. doi: 10.1007/s10548-020-00789-y. Epub 2020 Aug 7.

Abstract

The present work aims at validating a Bayesian multi-dipole modeling algorithm (SESAME) in the clinical scenario consisting of localizing the generators of single interictal epileptiform discharges from resting state magnetoencephalographic recordings. We use the results of Equivalent Current Dipole fitting, performed by an expert user, as a benchmark, and compare the results of SESAME with those of two widely used source localization methods, RAP-MUSIC and wMNE. In addition, we investigate the relation between post-surgical outcome and concordance of the surgical plan with the cerebral lobes singled out by the methods. Unlike dipole fitting, the tested algorithms do not rely on any subjective channel selection and thus contribute towards making source localization more unbiased and automatic. We show that the two dipolar methods, SESAME and RAP-MUSIC, generally agree with dipole fitting in terms of identified cerebral lobes and that the results of the former are closer to the fitted equivalent current dipoles than those of the latter. In addition, for all the tested methods and particularly for SESAME, concordance with surgical plan is a good predictor of seizure freedom while discordance is not a good predictor of poor post-surgical outcome. The results suggest that the dipolar methods, especially SESAME, represent a reliable and more objective alternative to manual dipole fitting for clinical applications in the field of epilepsy surgery.

摘要

本研究旨在验证一种适用于临床场景的贝叶斯多偶极子建模算法(SESAME),该算法旨在从静息状态脑磁图记录中定位单个发作间期癫痫样放电的发生器。我们将专家用户进行的等效电流偶极子拟合结果用作基准,并将 SESAME 的结果与两种广泛使用的源定位方法 RAP-MUSIC 和 wMNE 的结果进行比较。此外,我们还研究了手术结果与方法确定的脑叶之间的一致性之间的关系。与偶极子拟合不同,所测试的算法不依赖于任何主观的通道选择,因此有助于使源定位更加公正和自动化。我们发现,两种偶极子方法 SESAME 和 RAP-MUSIC 在识别脑叶方面通常与偶极子拟合一致,并且前者的结果比后者更接近拟合的等效电流偶极子。此外,对于所有测试的方法,特别是 SESAME,与手术计划的一致性是癫痫手术领域临床应用中无癫痫发作的良好预测指标,而不一致性并不是术后不良结果的良好预测指标。结果表明,偶极子方法,特别是 SESAME,代表了一种可靠且更客观的替代手动偶极子拟合的方法,可用于癫痫手术领域的临床应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0b7/7429532/a88aafd7791c/10548_2020_789_Fig1_HTML.jpg

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