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首页> 外文期刊>Investigative ophthalmology & visual science >Feasibility of microelectrode array (MEA) based on silicone-polyimide hybrid for retina prosthesis.
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Feasibility of microelectrode array (MEA) based on silicone-polyimide hybrid for retina prosthesis.

机译:基于有机硅-聚酰亚胺复合材料的微电极阵列(MEA)在视网膜假体中的可行性。

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PURPOSE: To adopt micropatterning technology in manufacturing silicone elastomer-based microelectrode arrays for retinal stimulation, a silicone-polyimide hybrid microelectrode array was proposed and tested in vivo. METHODS: Gold microelectrodes were created by semiconductor manufacturing technology based on polyimide and were hybridized with silicone elastomer by spin coating. The stability of the hybrid between the two materials was flex and blister tested. The feasibility of the hybrid electrode was evaluated in the rabbit eye by reviewing optical coherence tomography (OCT) findings after suprachoroidal implantation. RESULTS: The flex test showed no dehiscence between the two materials for 24 hours of alternative flexion and extension from -45.0 degrees to +45.0 degrees . During the blister test, delamination was observed at 8.33 +/- 1.36 psi of pressure stress; however, this property was improved to 11.50 +/- 1.04 psi by oxygen plasma treatment before hybridization. OCT examination revealed that the implanted electrodes were safely located in the suprachoroidal space during the 4-week follow-up period. CONCLUSIONS: The silicone-polyimide hybrid microelectrode array showed moderate physical properties, which are suitable for in vivo application. Appropriate pretreatment before hybridization improved electrode stability. In vivo testing indicated that this electrode is suitable as a stimulation electrode in artificial retina.
机译:目的:为了采用微图案技术制造用于视网膜刺激的有机硅弹性体基微电极阵列,提出了一种有机硅-聚酰亚胺混合微电极阵列并在体内进行了测试。方法:采用聚酰亚胺为基础的半导体制造技术制备了金微电极,并通过旋涂使其与有机硅弹性体杂交。两种材料之间的杂化物的稳定性经过弯曲和起泡测试。通过检查脉络膜上植入后的光学相干断层扫描(OCT)发现,评估了混合电极在兔眼中的可行性。结果:屈曲试验显示两种材料在从-45.0度到+45.0度的24小时交替屈曲和伸展过程中没有裂开。在起泡测试期间,在压力应力为8.33 +/- 1.36 psi时观察到了分层。然而,在杂交前通过氧等离子体处理将该性能提高到11.50 +/- 1.04psi。 OCT检查显示,在4周的随访期内,植入的电极安全地位于脉络膜上腔中。结论:有机硅-聚酰亚胺混合微电极阵列显示出适中的物理性质,适合体内应用。杂交前适当的预处理可改善电极稳定性。体内测试表明该电极适合用作人工视网膜中的刺激电极。

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