Scholay

学术搜索 · AI 审稿 · LaTeX 协作

A scalable platform for acquisition of high-fidelity human intracranial EEG with minimal clinical burden

作者:Lisa Yamada, Tomiko Oskotsky, Paul Nuyujukian · 发表于:PLoS ONE · 年份:2024 · DOI:10.1371/journal.pone.0305009 · 被引用次数:2 · 研究领域:EEG and Brain-Computer Interfaces、Neuroscience and Neural Engineering、Neural dynamics and brain function

Human neuroscience research has been significantly advanced by neuroelectrophysiological studies from people with refractory epilepsy-the only routine clinical intervention that acquires multi-day, multi-electrode human intracranial electroencephalography (iEEG). While a sampling rate below 2 kHz is sufficient for manual iEEG review by epileptologists, computational methods and research studies may benefit from higher resolution, which requires significant technical development. At adult and pediatric Stanford hospitals, research ports of commercial clinical acquisition systems were configured to collect 10 kHz iEEG of up to 256 electrodes simultaneously with the clinical data. The research digital stream was designed to be acquired post-digitization, resulting in no loss in clinical signal quality. This novel framework implements a near-invisible research platform to facilitate the secure, routine collection of high-resolution iEEG that minimizes research hardware footprint and clinical workflow interference. The addition of a pocket-sized router in the patient room enabled an encrypted tunnel to securely transmit research-quality iEEG across hospital networks to a research computer within the hospital server room, where data was coded, de-identified, and uploaded to cloud storage. Every eligible patient undergoing iEEG clinical evaluation at both hospitals since September 2017 has been recruited; participant recruitment is ongoing. Over 350+ terabytes (representing 1000+ da...