ball_squeeze_2025
[ and functional MRI. The dataset includes raw VHD-DOT data in SNIRF format from sessions 1-2 and fMRI data in NIfTI format from session 3 onwards, with preprocessed fMRI derivatives provided for direct comparison with optical neuroimaging measurements. Published in Imaging Neuroscience (2025).
This dataset contains intracranial electrophysiology recordings from the ventral posterolateral (VPL) thalamus of macaque monkeys, obtained using a NeuroNexus multi-site probe on a Blackrock Cerebus recording system. Recordings were made during focused ultrasound (FUS) neuromodulation targeted at either VPL or insular cortex, and during tactile stimulation of the contralateral hand. The dataset supports investigation of how transcranial focused ultrasound modulates spiking and local field potential activity in the primate thalamus.
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This dataset comprises multimodal physiological recordings from 86 participants during resting state and a digit span working memory task. It includes 64-channel EEG, electrocardiography, photoplethysmography, pupillometry, and behavioral performance data. The dataset enables investigation of neural and peripheral physiological correlates of cognitive load, working memory capacity, and cognitive overload detection across fine temporal scales.
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Imported from OpenNeuro ds007175
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This dataset contains EEG recordings collected to characterize visual fatigue induced by mixed reality stereo vision. Participants viewed resting and movement scenes designed to elicit varying degrees of visual fatigue while EEG was recorded from 24 scalp electrodes. The dataset supports both resting-state and task-state EEG analyses related to fatigue characterization under stereoscopic visual stimulation.
This dataset contains laser-evoked potential recordings capturing neural responses in the human spinal cord and cortex following nociceptive laser stimulation. It was collected to investigate the neurophysiological processing of pain-related signals across spinal and cortical levels. The dataset is organized according to the BIDS standard for electrophysiological data.