Iris 128x: open-source 128 channel headstages for neural stimulation and recording.
basic_science · Level V
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- Record sourced from PubMed, PMID 41151158.
- Also identified by DOI 10.1088/1741-2552/ae1876.
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Abstract
<i>Objective.</i>Investigation into complex neural circuits necessitates interfaces capable of high channel count recording and stimulation. However, existing commercial neural headstages often have limited scalability, restrictive proprietary designs, and constrained bidirectional capabilities, which worsens accessibility challenges and compels researchers to reinvent tools rather than build on a shared foundation.<i>Approach.</i>Here, we present two open-source, 128 channel headstages-Iris 128B and Iris 128S-designed for integration with microelectrode arrays. The Iris 128B enables fully bidirectional interfacing, with stimulation or recording across all 128 electrode channels, while the Iris 128S provides recording on 128 channels and stimulation on 16 simultaneous channels, which can be assigned to any 16 of the 32 available stimulation channels. Both designs use Intan Technologies' RHS and RHD series integrated circuits for amplification, filtering, digitization and stimulation, and are available on GitHub.<i>Main results.</i>The headstages were validated through benchtop impedance, noise, and frequency response measurements, as well as acute<i>in vivo</i>recordings in an anesthetized rat. Results demonstrate low noise levels and reliable signal acquisition across all channels.<i>Significance.</i>By releasing fully documented printed circuit board designs for headstages, this work aims to take a step towards broader adoption of bidirectional recording and stimulation systems while increasing channel counts. Future iterations will focus on miniaturization and wireless integration to improve usability in chronic and freely moving small animal experiments.
Medical subject headings
- Electrodes, Implanted
- Electric Stimulation