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首页> 外文期刊>Journal of Micromechanics and Microengineering >Flexible deep brain neural probes based on a parylene tube structure
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Flexible deep brain neural probes based on a parylene tube structure

机译:基于聚对皮管结构的柔性深脑神经探针

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Most microfabricated neural probes have limited shank length, which prevents them from reaching many deep brain structures. This paper reports deep brain neural probes with ultra-long penetrating shanks based on a simple but novel parylene tube structure. The mechanical strength of the parylene tube shank is temporarily enhanced during implantation by inserting a metal wire. The metal wire can be removed after implantation, making the implanted probe very flexible and thus minimizing the stress caused by micromotions of brain tissues. Optogenetic stimulation and chemical delivery capabilities can be potentially integrated by taking advantage of the tube structure. Single-shank prototypes with a shank length of 18.2 mm have been developed. The microfabrication process comprises of deep reactive ion etching (DRIE) of silicon, parylene conformal coating/refilling, and XeF2 isotropic silicon etching. In addition to bench-top insertion characterization, the functionality of developed probes has been preliminarily demonstrated by implanting into the amygdala of a rat and recording neural signals.
机译:大多数微制造的神经探头具有有限的柄长度,这可以防止它们达到许多深脑结构。本文报告了基于简单但新的聚对聚环管结构的超长渗透柄的深脑神经探头。通过插入金属线,在植入过程中暂时提高了聚对子管柄的机械强度。植入后可以除去金属线,使植入探针非常柔韧,从而最小化脑组织的微调引起的应力。通过利用管结构,可以潜在地集成光学刺激和化学输送能力。已经开发出柄长18.2毫米的单柄原型。微制造方法包括硅,二甲苯共形涂层/再填充的深反应离子蚀刻(Drie)和XeF2各向同性硅蚀刻。除了台式插入表征之外,通过植入大鼠的Amygdala和记录神经信号来初步证明开发探针的功能。

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