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Mechanical analysis and fabrication of a penetrating silicon microprobe as an artificial optic nerve visual prosthesis.

机译:机械分析和制造作为人工视神经视觉假体的穿透硅微探针。

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摘要

To investigate the mechanical response of a silicon microprobe while it penetrates the optic nerve.The finite element method was adopted to analyze models of the mechanical aspects of the silicon microprobe, including the effects of dimensions, the buckling load, lateral load, and the interaction between the microprobe and the tissue of the optic nerve. The silicon microprobe was fabricated based on silicon-on-insulator (SOI) wafer by micro-electro-mechanical system (MEMS) processing techniques.The designed microprobe shank was 750 μm long and 110 μm wide with thickness of 15 μm. Lateral barbs were included so as to decrease the stress at stimulating-site regions. The microprobe could withstand a 50 MPa vertical load on the shank tip before buckling, but was more likely to be damaged by a lateral load rather than a vertical one. The silicon microprobe was successfully fabricated by MEMS processing techniques based on a four-inch SOI wafer. Mechanical analysis of the interactions between shank and optic nerve tissue showed that the maximum stress changed during the process of the microprobe insertion.A silicon microprobe was designed as a potential visual prosthesis to be used for optic nerve stimulation. The mechanical issues were analyzed by means of the finite element method, and the implantable microprobe was fabricated based on a silicon-on-insulator wafer to maintain a uniform thickness.
机译:研究硅微探针穿透视神经时的机械响应。采用有限元方法分析硅微探针力学方面的模型,包括尺寸,屈曲载荷,横向载荷以及相互作用的影响。在探针和视神经组织之间。硅微探针是通过微机电系统(MEMS)处理技术基于绝缘体上硅(SOI)晶片制造的。设计的微探针柄长750μm,宽110μm,厚度为15μm。包括侧倒钩,以减少刺激部位的应力。微探针在屈曲之前可以承受柄尖上的50 MPa垂直载荷,但更可能是受到横向载荷而不是垂直载荷的破坏。通过基于四英寸SOI晶圆的MEMS处理技术成功制造了硅微探针。对小腿与视神经组织相互作用的力学分析表明,在微探针插入过程中,最大应力发生了变化。硅微探针被设计为潜在的视觉假体,用于刺激视神经。通过有限元方法分析了机械问题,并基于绝缘体上硅晶片制造了可植入的微探针,以保持均匀的厚度。

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