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The high density electrode array elicited less CIC activity at nonspecific frequency regions than the platinum ring electrode array.
The high density electrode array produced significantly lower thresholds and larger dynamic ranges than the platinum ring electrode array when positioned close to the modiolus.
In a high density electrode array, the ability to selectively record neural regions at high speed and with good signal to noise ratio are both functionally important.
High density electrode array recordings revealed a centero-frontal N140 component (N140c), which preceded the parietal N140 (N140p) by about 20 ms. The N140c exhibited an attention effect in particular in the trial-by-trial spatial cueing condition.
We investigated the modulation of the somatosensory evoked potential (SEP) elicited by mechanical stimuli in a spatial sustained attention and a spatial trial-by-trial cueing design by means of high density electrode array EEG recordings.
Current technological developments as high density electrode arrays for parallel electrophysiological recordings and optogenetic tools that allow fine control of activity in specific cell populations provide powerful tools to investigate brain physio-pathology.
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CIC responses to both the platinum ring and high density electrodes were recorded and differences in activity to changes in stimulation intensity, thresholds and frequency coding of neural activation were examined.
In partnership with Infinite Biomedical Technologies, they are developing high- density electrodes for sensing muscle signals and radio-frequency identification systems that allow prostheses to recognize tagged objects like the user's personal coffee cup and to automatically prepare to grasp them.
Future EEG studies with high density electrodes may confirm and expand these results.
High capacity was also found to be favored by low charge current density (25 mA cm−2. The capacity of a low density electrode (19.6% of the theoretical density of iron) was found to be much less affected by discharge current density than were higher density electrodes.
Viventi, J. et al. Flexible, foldable, actively multiplexed, high-density electrode array for mapping brain activity in vivo.
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