4.7 Article

Advances in human intracranial electroencephalography research, guidelines and good practices

期刊

NEUROIMAGE
卷 260, 期 -, 页码 -

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.neuroimage.2022.119438

关键词

Intracranial recording in humans; Stereotactic electroencephalography; sEEG; Electrocorticogram; ECoG; Good research practice

资金

  1. EU [798853]
  2. NIH/NIBIB [R01EB026299]
  3. NIMH/NIH [R01MH122258]
  4. NIH/NINDS [2 R01 NS021135, 1U19NS107609-01]
  5. NIH/NIDCD [U01 DC016686]
  6. NWO [17619]
  7. Swiss National Science Foundation [167836, 194507]
  8. Max Planck Society
  9. Emmy Noether Program of the German Research Foundation [SCHW1683/2-1]
  10. Marie Curie Actions (MSCA) [798853] Funding Source: Marie Curie Actions (MSCA)

向作者/读者索取更多资源

Intracranial electroencephalography (iEEG) provides a detailed understanding of the human brain. This article critically reviews iEEG research practices, provides guidelines for newcomers, and addresses issues faced by experienced researchers. The paper covers data collection, electrode localization, preprocessing steps, signal analysis methods, statistical approaches, and unique perspectives on iEEG research. A glossary is also provided for consistent terminology.
Since the second-half of the twentieth century, intracranial electroencephalography (iEEG), including both electrocorticography (ECoG) and stereo-electroencephalography (sEEG), has provided an intimate view into the human brain. M the interface between fundamental research and the clinic, iEEG provides both high temporal resolution and high spatial specificity but comes with constraints, such as the individual's tailored sparsity of electrode sampling. Over the years, researchers in neuroscience developed their practices to make the most of the iEEG approach. Here we offer a critical review of iEEG research practices in a didactic framework for newcomers, as well addressing issues encountered by proficient researchers. The scope is threefold: (i) review common practices in iEEG research, (H) suggest potential guidelines for working with iEEG data and answer frequently asked questions based on the most widespread practices, and (Hi) based on current neurophysiological knowledge and methodologies, pave the way to good practice standards in iEEG research. The organization of this paper follows the steps of iEEG data processing. The first section contextualizes iEEG data collection. The second section focuses on localization of intracranial electrodes. The third section highlights the main pre-processing steps. The fourth section presents iEEG signal analysis methods. The fifth section discusses statistical approaches. The sixth section draws some unique perspectives on iEEG research. Finally, to ensure a consistent nomenclature throughout the manuscript and to align with other guidelines, e.g., Brain Imaging Data Structure (BIDS) and the OHBM Committee on Best Practices in Data Analysis and Sharing (COBIDAS), we provide a glossary to disambiguate terms related to iEEG research.

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