Ultraflexible and Stretchable Intrafascicular Peripheral Nerve Recording Device with Axon-Dimension, Cuff-Less Microneedle Electrode Array
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Title
- Ultraflexible and Stretchable Intrafascicular Peripheral Nerve Recording Device with Axon-Dimension, Cuff-Less Microneedle Electrode Array
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Author(s)
- Dongxiao Yan; Ahmad A. Jiman; Elizabeth C. Bottorff; Paras R. Patel; Dilara Meli; Elissa J. Welle; David C. Ratze; Leif A. Havton; Cynthia A. Chestek; Stephen W. P. Kemp; Tim M. Bruns; Euisik Yoon; John P. Seymour
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Publication Date
- 2022-05
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Journal
- Small, v.18, no.21
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Publisher
- John Wiley and Sons Inc
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Abstract
- © 2022 Wiley-VCH GmbH.Peripheral nerve mapping tools with higher spatial resolution are needed to advance systems neuroscience, and potentially provide a closed-loop biomarker in neuromodulation applications. Two critical challenges of microscale neural interfaces are 1) how to apply them to small peripheral nerves, and 2) how to minimize chronic reactivity. A flexible microneedle nerve array (MINA) is developed, which is the first high-density penetrating electrode array made with axon-sized silicon microneedles embedded in low-modulus thin silicone. The design, fabrication, acute recording, and chronic reactivity to an implanted MINA, are presented. Distinctive units are identified in the rat peroneal nerve. The authors also demonstrate a long-term, cuff-free, and suture-free fixation manner using rose bengal as a light-activated adhesive for two time-points. The tissue response is investigated at 1-week and 6-week time-points, including two sham groups and two MINA-implanted groups. These conditions are quantified in the left vagus nerve of rats using histomorphometry. Micro computed tomography (micro-CT) is added to visualize and quantify tissue encapsulation around the implant. MINA demonstrates a reduction in encapsulation thickness over previously quantified interfascicular methods. Future challenges include techniques for precise insertion of the microneedle electrodes and demonstrating long-term recording.
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URI
- https://pr.ibs.re.kr/handle/8788114/11949
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DOI
- 10.1002/smll.202200311
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ISSN
- 1613-6810
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Appears in Collections:
- Center for Nanomedicine (나노의학 연구단) > 1. Journal Papers (저널논문)
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