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Design, Fabrication, Simulation and Characterization of a Novel Dual-Sided Microelectrode Array for Deep Brain Recording and Stimulation

机译:用于大脑深部记录和刺激的新型双面微电极阵列的设计,制造,仿真和表征

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In this paper, a novel dual-sided microelectrode array is specially designed and fabricated for a rat Parkinson’s disease (PD) model to study the mechanisms of deep brain stimulation (DBS). The fabricated microelectrode array can stimulate the subthalamic nucleus and simultaneously record electrophysiological information from multiple nuclei of the basal ganglia system. The fabricated microelectrode array has a long shaft of 9 mm and each planar surface is equipped with three stimulating sites (diameter of 100 μm), seven electrophysiological recording sites (diameter of 20 μm) and four sites with diameter of 50 μm used for neurotransmitter measurements in future work. The performances of the fabricated microelectrode array were characterized by scanning electron microscopy (SEM), electrochemical impedance spectroscopy (EIS) and cyclic voltammetry. In addition, the stimulating effects of the fabricated microelectrode were evaluated by finite element modeling (FEM). Preliminary animal experiments demonstrated that the designed microelectrode arrays can record spontaneous discharge signals from the striatum, the subthalamic nucleus and the globus pallidus interna. The designed and fabricated microelectrode arrays provide a powerful research tool for studying the mechanisms of DBS in rat PD models.
机译:在本文中,专门针对大鼠帕金森氏病(PD)模型设计和制造了一种新型的双面微电极阵列,以研究深部脑刺激(DBS)的机制。所制造的微电极阵列可以刺激丘脑下核,并同时记录来自基底神经节系统的多个核的电生理信息。制成的微电极阵列的长轴长为9 mm,每个平面都配备了三个刺激部位(直径为100μm),七个电生理记录部位(直径为20μm)和四个直径为50μm的部位,用于神经递质测量在未来的工作中。通过扫描电子显微镜(SEM),电化学阻抗谱(EIS)和循环伏安法表征了制备的微电极阵列的性能。此外,通过有限元建模(FEM)评估了制成的微电极的刺激效果。初步的动物实验表明,设计的微电极阵列可以记录纹状体,丘脑下核和苍白球的自发放电信号。设计和制造的微电极阵列为研究大鼠PD模型中DBS的机理提供了强大的研究工具。

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