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Showing 1 to 3 of 3 for “"mobile brain-body imaging"”.

  1. Neural Underpinnings of Walking Under Cognitive and Sensory Load: A Mobile Brain/Body Imaging Approach

    … during gait. Additionally, recent EEG and imaging (PET, fNIRS) studies have revealed direct neurophysiological evidence of cortical contributions to steady-state walking. However, there remains a lack of knowledge regarding the underlying neural mechanisms involved in the allocation of …

    cuny-grad Repository record for Neural Underpinnings of Walking Under Cognitive and Sensory Load: A Mobile Brain/Body Imaging Approach (opens in a new tab)

  2. Study on FPGA-based computation units for Ocular Artifact Removal algorithm for multi-channel Electroencephalography (EEG)

    … implementation of real-time ANC algorithms for mobile brain-body imaging and brain computer interface applications. This work not only contributes to the technical domain of EEG signal processing and adaptive noise cancelling, but also has the potential to enhance the quality of life for …

    houston Repository record for Study on FPGA-based computation units for Ocular Artifact Removal algorithm for multi-channel Electroencephalography (EEG) (opens in a new tab)

  3. Influence of Vibratory Plantar Stimulation on Cortical Motor Planning and Spatiotemporal Step Parameters

    Walking relies on coordinated neuromuscular control, proactive motor planning, and continuous integration of sensory feedback. The premotor cortex (PMC) supports movement preparation, while plantar mechanoreceptors provide essential input for anticipatory postural adjustments and gait initiation. …

    uwo Repository record for Influence of Vibratory Plantar Stimulation on Cortical Motor Planning and Spatiotemporal Step Parameters (opens in a new tab)