立体脑电图
计算机科学
医学物理学
医学
人工智能
神经科学
脑电图
心理学
癫痫外科
作者
Jean‐Michel Badier,Anne‐Sophie Dubarry,Martine Gavaret,Shilin Chen,Agnès Trebuchon,P Marquis,J. Régis,Fabrice Bartolomei,Christian Bénar,Romain Carron
出处
期刊:Physiological Measurement
[IOP Publishing]
日期:2017-09-21
卷期号:38 (10): N118-N127
被引量:39
标识
DOI:10.1088/1361-6579/aa7655
摘要
The simultaneous recording of intracerebral EEG (stereotaxic EEG, SEEG) and magnetoencephalography (MEG) is a promising strategy that provides both local and global views on brain pathological activity. Yet, acquiring simultaneous signals poses difficult technical issues that hamper their use in clinical routine. Our objective was thus to develop a set of solutions for recording a high number of SEEG channels while preserving signal quality.We recorded data in a patient with drug resistant epilepsy during presurgical evaluation. We used dedicated insertion screws and optically insulated amplifiers. We recorded 137 SEEG contacts on 10 depth electrodes (5-15 contacts each) and 248 MEG channels (magnetometers). Signal quality was assessed by comparing the distribution of RMS values in different frequency bands to a reference set of MEG acquisitions.The quality of signals was excellent for both MEG and SEEG; for MEG, it was comparable to that of MEG signals without concurrent SEEG. Discharges involving several structures on SEEG were visible on MEG, whereas discharges limited in space were not seen at the surface.SEEG can now be recorded simultaneously with whole-head MEG in routine. This opens new avenues, both methodologically for understanding signals and improving signal processing methods, and clinically for future combined analyses.
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