生物电子学
材料科学
快速成型
生物相容性材料
微电极
纳米技术
生物医学工程
电极
微流控
计算机科学
生物传感器
化学
工程类
物理化学
复合材料
作者
Dzmitry Afanasenkau,Daria Kalinina,Vsevolod Lyakhovetskii,Christoph Tondera,O. V. Gorsky,Seyyed Gholamreza Moosavi,Н. В. Павлова,Natalia Merkulyeva,Allan V. Kalueff,Ivan R. Minev,Pavel Musienko
标识
DOI:10.1038/s41551-020-00615-7
摘要
Neuromuscular interfaces are required to translate bioelectronic technologies for application in clinical medicine. Here, by leveraging the robotically controlled ink-jet deposition of low-viscosity conductive inks, extrusion of insulating silicone pastes and in situ activation of electrode surfaces via cold-air plasma, we show that soft biocompatible materials can be rapidly printed for the on-demand prototyping of customized electrode arrays well adjusted to specific anatomical environments, functions and experimental models. We also show, with the monitoring and activation of neuronal pathways in the brain, spinal cord and neuromuscular system of cats, rats and zebrafish, that the printed bioelectronic interfaces allow for long-term integration and functional stability. This technology might enable personalized bioelectronics for neuroprosthetic applications. Customized soft electrode arrays that are well adjusted to specific anatomical environments, functions and experimental models can be rapidly prototyped via the robotically controlled deposition of conductive inks and insulating inks.
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