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A Multi-Channel Approach for Cortical Stimulation Artefact Suppression in Depth EEG Signals Using Time-Frequency and Spatial Filtering

机译:使用时频和空间滤波的深度脑电信号皮层刺激伪影抑制的多通道方法

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Objective: The stereo electroencephalogram (SEEG) recordings are the state-of-the art tool used in pre-surgical evaluation of drug-unresponsive epileptic patients. Coupled with SEEG, electrical cortical stimulation (CS) offers a complementary tool to investigate the lesioned/healthy brain regions and to identify the epileptic zones with precision. However, the propagation of this stimulation inside the brain masks the cerebral activity recorded by nearby multi-contact SEEG electrodes. The objective of this paper is to propose a novel filtering approach for suppressing the CS artifact in SEEG signals using time, frequency as well as spatial information. Methods: The method combines spatial filtering with tunable-Q wavelet transform (TQWT). SEEG signals are spatially filtered to isolate the CS artifacts within a few number of sources/components. The artifacted components are then decomposed into oscillatory background and sharp varying transient signals using TQWT. The CS artifact is assumed to lie in the transient part of the signal. Using prior known time-frequency information of the CS artifacts, we selectively mask the wavelet coefficients of the transient signal and extract out any remaining significant electro-physiological activity. Results: We have applied our proposed method of CS artifact suppression on simulated and real SEEG signals with convincing performance. The experimental results indicate the effectiveness of the proposed approach. Conclusion: The proposed method suppresses CS artifacts without affecting the background SEEG signal. Significance: The proposed method can be applied for suppressing both low and high frequency CS artifacts and outperforms current methods from the literature.
机译:目的:立体脑电图(SEEG)录音是用于对无药反应性癫痫患者进行术前评估的最新工具。结合SEEG,皮层电刺激(CS)提供了一种辅助工具,可用于调查病变/健康的大脑区域并精确地识别癫痫区。但是,这种刺激在大脑内部的传播掩盖了附近多触点SEEG电极记录的大脑活动。本文的目的是提出一种新颖的滤波方法,以利用时间,频率以及空间信息来抑制SEEG信号中的CS伪影。方法:该方法将空间滤波与可调Q小波变换(TQWT)相结合。 SEEG信号在空间上经过滤波,以隔离一些源/组件中的CS伪像。然后,使用TQWT将伪像成分分解为振荡背景和急剧变化的瞬态信号。假设CS伪影位于信号的瞬态部分。使用CS伪像的先前已知的时频信息,我们选择性地掩盖了瞬态信号的小波系数,并提取出任何剩余的重要电生理活动。结果:我们将拟议的CS伪影抑制方法应用于具有令人信服性能的模拟和真实SEEG信号。实验结果表明了该方法的有效性。结论:所提出的方法在不影响背景SEEG信号的情况下抑制了CS伪影。启示:所提出的方法可用于抑制低频和高频CS伪像,并且优于文献中的现有方法。

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