Hess-Dunning Allison, Tyler Dustin J
Rehabilitation Research and Development, Louis Stokes Cleveland VA Medical Center, Cleveland, OH 44106, USA.
Advanced Platform Technology Center, Cleveland, OH 44106, USA.
Micromachines (Basel). 2018 Nov 8;9(11):583. doi: 10.3390/mi9110583.
Mechanical, materials, and biological causes of intracortical probe failure have hampered their utility in basic science and clinical applications. By anticipating causes of failure, we can design a system that will prevent the known causes of failure. The neural probe design was centered around a bio-inspired, mechanically-softening polymer nanocomposite. The polymer nanocomposite was functionalized with recording microelectrodes using a microfabrication process designed for chemical and thermal process compatibility. A custom package based upon a ribbon cable, printed circuit board, and a 3D-printed housing was designed to enable connection to external electronics. Probes were implanted into the primary motor cortex of Sprague-Dawley rats for 16 weeks, during which regular recording and electrochemical impedance spectroscopy measurement sessions took place. The implanted mechanically-softening probes had stable electrochemical impedance spectra across the 16 weeks and single units were recorded out to 16 weeks. The demonstration of chronic neural recording with the mechanically-softening probe suggests that probe architecture, custom package, and general design strategy are appropriate for long-term studies in rodents.
皮层内探针故障的机械、材料和生物原因阻碍了它们在基础科学和临床应用中的效用。通过预测故障原因,我们可以设计一个能够预防已知故障原因的系统。神经探针的设计以一种受生物启发的、机械软化的聚合物纳米复合材料为核心。使用为化学和热过程兼容性设计的微制造工艺,将记录微电极功能化到聚合物纳米复合材料上。设计了一个基于带状电缆、印刷电路板和3D打印外壳的定制封装,以便与外部电子设备连接。将探针植入Sprague-Dawley大鼠的初级运动皮层16周,在此期间进行定期记录和电化学阻抗谱测量。植入的机械软化探针在16周内具有稳定的电化学阻抗谱,并且单个单元记录到了16周。使用机械软化探针进行慢性神经记录的演示表明,探针结构、定制封装和总体设计策略适用于啮齿动物的长期研究。