A portable neurostimulator circuit with anodic bias enhances stimulation injection capacity.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 36067737.
- Also identified by DOI 10.1088/1741-2552/ac8fb6 and PMC identifier 9573774.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
<i>Objective.</i>Electrochemically safe and efficient charge injection for neural stimulation necessitates monitoring of polarization and enhanced charge injection capacity of the stimulating electrodes. In this work, we present improved microstimulation capability by developing a custom-designed multichannel portable neurostimulator with a fully programmable anodic bias circuitry and voltage transient monitoring feature.<i>Approach.</i>We developed a 16-channel multichannel neurostimulator system, compared charge injection capacities as a function of anodic bias potentials, and demonstrated convenient control of the system by a custom-designed user interface allowing bidirectional wireless data transmission of stimulation parameters and recorded voltage transients. Charge injections were conducted in phosphate-buffered saline with silicon-based iridium oxide microelectrodes.<i>Main results.</i>Under charge-balanced 200<i>µ</i>s cathodic first pulsing, the charge injection capacities increased proportionally to the level of anodic bias applied, reaching a maximum of ten-fold increase in current intensity from 10<i>µ</i>A (100<i>µ</i>C cm<sup>-2</sup>) to 100<i>µ</i>A (1000<i>µ</i>C cm<sup>-2</sup>) with a 600 mV anodic bias. Our custom-designed and completely portable 16-channel neurostimulator enabled a significant increase in charge injection capacity<i>in vitro. Significance.</i>Limited charge injection capacity has been a bottleneck in neural stimulation applications, and our system may enable efficacious behavioral animal study involving chronic microstimulation while ensuring electrochemical safety.
Medical subject headings
- Phosphates
- Silicon