High-density EEG mobile brain/body imaging data recorded during a challenging auditory gait pacing task.
Johanna WagnerRamon Martinez-CancinoArnaud DelormeScott MakeigTeodoro Solis-EscalanteChrista NeuperGernot R Müller-PutzPublished in: Scientific data (2019)
In this report we present a mobile brain/body imaging (MoBI) dataset that allows study of source-resolved cortical dynamics supporting coordinated gait movements in a rhythmic auditory cueing paradigm. Use of an auditory pacing stimulus stream has been recommended to identify deficits and treat gait impairments in neurologic populations. Here, the rhythmic cueing paradigm required healthy young participants to walk on a treadmill (constant speed) while attempting to maintain step synchrony with an auditory pacing stream and to adapt their step length and rate to unanticipated shifts in tempo of the pacing stimuli (e.g., sudden shifts to a faster or slower tempo). High-density electroencephalography (EEG, 108 channels), surface electromyography (EMG, bilateral tibialis anterior), pressure sensors on the heel (to register timing of heel strikes), and goniometers (knee, hip, and ankle joint angles) were concurrently recorded in 20 participants. The data is provided in the Brain Imaging Data Structure (BIDS) format to promote data sharing and reuse, and allow the inclusion of the data into fully automated data analysis workflows.
Keyphrases
- high density
- data analysis
- working memory
- electronic health record
- resting state
- big data
- high resolution
- functional connectivity
- white matter
- cardiac resynchronization therapy
- machine learning
- healthcare
- hearing loss
- artificial intelligence
- heart failure
- photodynamic therapy
- high throughput
- middle aged
- genetic diversity