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Chronic Implantation of Whole-cortical Electrocorticographic Array in the Common Marmoset
Published on: February 1, 2019
Longitudinal multitask wireless electrocorticography data from two fully implanted nonhuman primates
Huixiang Yang1, Ryohei Fukuma1,2, Tomoyuki Namima3,4
1Department of Neuroinformatics, The University of Osaka Graduate School of Medicine, Suita, Japan.
This study provides long-term wireless electrocorticography (ECoG) data from nonhuman primates, detailing cortical dynamics during various tasks. The open-access dataset supports brain-computer interface (BCI) research and understanding of neural activity over time.
Area of Science:
- Neuroscience
- Biomedical Engineering
- Data Science
Background:
- Chronic electrocorticography (ECoG) recordings are crucial for understanding long-term brain dynamics.
- Existing datasets often lack the duration or wireless capabilities needed for comprehensive research.
- Nonhuman primate models offer valuable insights into sensorimotor cortical functions.
Purpose of the Study:
- To present a unique, high-quality dataset of chronic wireless ECoG recordings.
- To facilitate research into long-term cortical dynamics and brain-computer interfaces (BCI).
- To ensure data interoperability and reusability through adherence to the Brain Imaging Data Structure (BIDS).
Main Methods:
- Utilized bilateral subdural ECoG arrays in two Japanese macaques (Macaca fuscata).
- Employed fully implantable wireless transmission units for data acquisition over hundreds of days.
- Recorded data during resting-state, auditory, motor tasks, and somatosensory evoked potential paradigms.
- Organized all data, including raw signals, annotations, and metadata, according to the BIDS extension for intracranial electrophysiology.
Main Results:
- Confirmed data quality and signal stability through impedance monitoring and spectral analyses.
- Demonstrated reliability and consistency of ECoG signals across the extensive recording period.
- Provided a comprehensive dataset covering diverse behavioral and stimulus conditions.
Conclusions:
- The open-access longitudinal wireless ECoG dataset is a valuable resource for neuroscience research.
- This data will advance the understanding of chronic cortical dynamics.
- The dataset is expected to accelerate progress in brain-computer interface (BCI) development and applications.
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