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Implantable Glass Waveguides and Coating Materials for Chronic Optical Medical Applications

机译:用于慢性光学医疗应用的可植入玻璃波导和涂料

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An innovative fabrication process of glass waveguides on silicon substrates for miniaturized implants is presented. Thin glass was bonded on oxidized silicon wafers and patterned using wet etching. Multimode waveguides with different shapes and a low surface roughness as well as low scattering of light were successfully fabricated. For efficient coupling of light and accurate alignment, KOH-grooves were etched in the silicon with respect to the glass waveguides to attach optical fibers from external light sources. Towards higher biostability, several coating materials were evaluated in accelerated in vitro tests in 60°C PBS for the first time over a long period of time regarding their optical properties. Ti02, SiC, polyimide, Parylene C and SU-8 showed a very stable optical transmittance after 320 days in accelerated aging while PECVDSi3N4 showed significant changes within the first days.
机译:提出了一种用于小型植入物的硅基衬底上的玻璃波导的创新制造过程。在氧化硅晶片上粘合薄玻璃并使用湿法蚀刻图案化。成功制造了具有不同形状和低表面粗糙度的多模波导以及低光散射。为了有效地耦合光和精确对准,相对于玻璃波导在硅中蚀刻KOH-槽以附着来自外部光源的光纤。为了更高的生物稳定性,在长时间内在60℃PBS中加速在60℃PBS的体外试验中,在很长一段时间内评估了几种涂层材料。 TI0. 2 ,SiC,聚酰亚胺,二甲苯C和SU-8在加速老化后320天后显示出非常稳定的光学透射率,而PECVDSI 3 N 4 在第一天内显示出重大变化。

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