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新型柔性聚对二甲苯神经探针,具有 3D 鞘结构,可增强组织整合。

Novel flexible Parylene neural probe with 3D sheath structure for enhancing tissue integration.

机构信息

Department of Biomedical Engineering, University of Southern California, 1042 Downey Way, DRB-140, Los Angeles, CA 90089-1111, USA.

出版信息

Lab Chip. 2013 Feb 21;13(4):554-61. doi: 10.1039/c2lc40935f.

Abstract

A Parylene C neural probe with a three dimensional sheath structure was designed, fabricated, and characterized. Multiple platinum (Pt) electrodes for recording neural signals were fabricated on both inner and outer surfaces of the sheath structure. Thermoforming of Parylene was used to create the three dimensional sheath structures from flat surface micromachined microchannels using solid microwires as molds. Benchtop electrochemical characterization was performed on the thin film Pt electrodes using cyclic voltammetry and electrochemical impedance spectroscopy and showed that electrodes possessed low impedances suitable for neuronal recordings. A procedure for implantation of the neural probe was developed and successfully demonstrated in vitro into an agarose brain tissue model. The electrode-lined sheath will be decorated with eluting neurotrophic factors to promote in vivo neural tissue ingrowth post-implantation. These features will enhance tissue integration and improve recording quality towards realizing reliable chronic neural interfaces.

摘要

设计、制造和表征了一种具有三维鞘结构的派瑞林 C 神经探针。在鞘结构的内表面和外表面上都制造了多个用于记录神经信号的铂 (Pt) 电极。使用热成型技术,通过使用实心微丝作为模具,从平面微加工微通道中制造出三维鞘结构。使用循环伏安法和电化学阻抗谱对薄膜 Pt 电极进行了台式电化学特性表征,结果表明电极具有适合神经元记录的低阻抗。开发了一种神经探针植入程序,并成功地在体外到琼脂糖脑组织模型中进行了演示。电极衬里的鞘将用洗脱神经营养因子进行修饰,以促进植入后的体内神经组织向内生长。这些特性将增强组织整合并提高记录质量,从而实现可靠的慢性神经接口。

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