Guidelines to Study and Develop Soft Electrode Systems for Neural Stimulation

Electrical stimulation of nervous structures is a widely used experimental and clinical method to probe neural circuits, perform diagnostics, or treat neurological disorders. The recent introduction of soft materials to design electrodes that conform to and mimic neural tissue led to neural interfac...

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Veröffentlicht in:Neuron (Cambridge, Mass.) Mass.), 2020-10, Vol.108 (2), p.238-258
Hauptverfasser: Schiavone, Giuseppe, Kang, Xiaoyang, Fallegger, Florian, Gandar, Jérôme, Courtine, Grégoire, Lacour, Stéphanie P.
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Sprache:eng
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Zusammenfassung:Electrical stimulation of nervous structures is a widely used experimental and clinical method to probe neural circuits, perform diagnostics, or treat neurological disorders. The recent introduction of soft materials to design electrodes that conform to and mimic neural tissue led to neural interfaces with improved functionality and biointegration. The shift from stiff to soft electrode materials requires adaptation of the models and characterization methods to understand and predict electrode performance. This guideline aims at providing (1) an overview of the most common techniques to test soft electrodes in vitro and in vivo; (2) a step-by-step design of a complete study protocol, from the lab bench to in vivo experiments; (3) a case study illustrating the characterization of soft spinal electrodes in rodents; and (4) examples of how interpreting characterization data can inform experimental decisions. Comprehensive characterization is paramount to advancing soft neurotechnology that meets the requisites for long-term functionality in vivo. Schiavone et al. describe the use of current characterization techniques to study electrode systems for neural stimulation, with focus on the specificities of soft technology. The authors provide guidelines to design complete in vivo characterization studies and interpret characterization data.
ISSN:0896-6273
1097-4199
DOI:10.1016/j.neuron.2020.10.010