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正确选择参考文献并重新引用以减轻单脉冲电刺激数据中的偏差。

Proper reference selection and re-referencing to mitigate bias in single pulse electrical stimulation data.

作者信息

Huang Harvey, Adkinson Joshua A, Jensen Michael A, Hasen Mohammed, Danstrom Isabel A, Bijanki Kelly R, Gregg Nicholas M, Miller Kai J, Sheth Sameer A, Hermes Dora, Bartoli Eleonora

机构信息

Mayo Clinic, Medical Scientist Training Program.

Baylor College of Medicine, Department of Neurosurgery.

出版信息

bioRxiv. 2024 Oct 22:2024.10.21.619449. doi: 10.1101/2024.10.21.619449.

Abstract

Single pulse electrical stimulation experiments produce pulse-evoked potentials used to infer brain connectivity. The choice of recording reference for intracranial electrodes remains non-standardized and can significantly impact data interpretation. When the reference electrode is affected by stimulation or evoked brain activity, it can contaminate the pulse-evoked potentials recorded at all other electrodes and influence interpretation of findings. We highlight this specific issue in intracranial EEG datasets from two subjects recorded at separate institutions. We present several intuitive metrics to detect the presence of reference contamination and offer practical guidance on different mitigation strategies. Either switching the reference electrode or re-referencing to an adjusted common average effectively mitigated the reference contamination issue, as evidenced by increased variability in pulse-evoked potentials across the brain. Overall, we demonstrate the importance of clear quality checks and preprocessing steps that should be performed before analysis of single pulse electrical stimulation data.

摘要

单脉冲电刺激实验产生用于推断大脑连通性的脉冲诱发电位。颅内电极记录参考的选择仍未标准化,并且会显著影响数据解释。当参考电极受到刺激或诱发的脑活动影响时,它会污染在所有其他电极记录的脉冲诱发电位,并影响研究结果的解释。我们在来自两个不同机构记录的两名受试者的颅内脑电图数据集中突出了这个特定问题。我们提出了几个直观的指标来检测参考污染的存在,并就不同的缓解策略提供实用指导。切换参考电极或重新参考调整后的共同平均值都有效地缓解了参考污染问题,这通过大脑中脉冲诱发电位变异性的增加得到证明。总体而言,我们证明了在分析单脉冲电刺激数据之前应进行清晰的质量检查和预处理步骤的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e72/11526894/ada2f716873e/nihpp-2024.10.21.619449v1-f0001.jpg

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