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Direct-write patterning of nanostructured sensory waveguides for integrated optical bioimaging applications

机译:用于集成光学生物分析应用的纳米结构感觉波导的直接写图案化

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We report the development of a novel methodology for patterning of nanostructured sensory materials using multidimensional microstructured support platforms for optical bioimaging applications. Specifically, the support platforms are fabricated using direct-write technique and sol-gel derived xerogel thin-films to form the sensor materials. This creates a simple and versatile method for developing complex 3-D microstructures that have the combined capabilities of biochemical sensing, microfluidic sample distribution for sensor arrays, and direct integration with Complimentary Metal-Oxide Semiconductor (CMOS) Integrated Circuits (ICs) used for sensor signal detection and processing. More importantly, this methodology would enable the development of large-scale arrayed sensing platforms for applications in cell-culture analysis and tissue imaging. The configuration and fabrication of the proposed microstructures, which consist of planar ridge and hollow waveguides, will be described in detail. As a prototype implementation, we demonstrate direct-write ridge waveguide support structures coated with luminophore-doped xerogels that are responsive to gaseous oxygen (O_2) concentration.
机译:我们报告了使用用于光学生物分析应用的多维微结构支持平台的多维微结构支持平台进行图案化纳米结构感觉材料的新方法的开发。具体地,使用直接写入技术和溶胶 - 凝胶衍生的Xerogel薄膜制造支持平台以形成传感器材料。这为开发具有生物化学感测的复杂3-D微结构的简单而通用的方法,具有用于传感器阵列的生物化学传感,微流体样本分布的组合能力,以及与用于传感器的互补金属氧化物半导体(CMOS)集成电路(IC)的直接集成信号检测和处理。更重要的是,该方法能够在细胞培养分析和组织成像中发展大规模排列的传感平台。将详细描述由平面脊和中空波导组成的所提出的微结构的配置和制造。作为原型实现,我们展示了涂有激光掺杂荧光体氧化物的直接写入脊波导支撑结构,其响应于气态氧(O_2)浓度。

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