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Comparison of Common Artifact Rejection Methods applied to Direct Cortical and Peripheral Stimulation in Human ECoG

机译:常见伪影抑制方法的比较应用于人体ECOG中的皮质和外周刺激

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Invasive and non-invasive electrical stimulation are increasingly being used for the diagnosis and treatment of neurological disorders, and for characterizing neural circuits involved in a range of behaviors. However, there are substantial challenges in understanding the effects of stimulation on brain activity due to contamination of electrophysiological recordings by electrical stimulation artifacts. Here, we compare the performance of several artifact removal methods on electrocorticographic (ECoG) recordings with simultaneous cortical or peripheral stimulation in humans. We systematically evaluated the effects of stimulation modality, stimulation frequency, and neural recording frequency on the ability to reconstruct neural activity amplitude and phase data. We found that no single method was most effective for all situations, however it was possible to reconstruct key neural data features in every case. The development of optimized artifact removal procedures will facilitate clearer understanding of the biological effects of electrical stimulation and allow for improved therapeutic applications.
机译:侵入性和非侵入性电刺激越来越多地用于诊断和治疗神经系统疾病,以及表征涉及一系列行为的神经电路。然而,由于电刺激伪影,了解刺激刺激对脑活动的影响存在巨大挑战。在这里,我们比较多种伪影去除方法对具有同时皮质或外周刺激的电容性分解方法对人类的同时皮质或外周刺激。我们系统地评估了刺激模态,刺激频率和神经记录频率对重建神经活动幅度和相位数据的能力的影响。我们发现,对于所有情况,没有单一方法最有效,但是可以在每种情况下重建密钥神经数据功能。优化的工件去除程序的发展将促进更清楚地了解电刺激的生物学效应,并允许改善治疗应用。

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