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Flexible Transient Optical Waveguides and Surface-wave Biosensors Constructed from Monocrystalline Silicon

机译:由单晶硅构成的柔性瞬态光波导和表面波生物传感器

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摘要

Optical technologies offer important capabilities in both biological research and clinical care. Recent interest is in implantable devices that provide intimate optical coupling to biological tissues for a finite time period and then undergo full bioresorption into benign products, thereby serving as temporary implants for diagnosis and/or therapy. The results presented here establish a silicon-based, bioresorbable photonic platform that relies on thin filaments of monocrystalline silicon encapsulated by polymers as flexible, transient optical waveguides for accurate light delivery and sensing at targeted sites in biological systems. Comprehensive studies of the mechanical and optical properties associated with bending and unfurling the waveguides from wafer-scale sources of materials establish general guidelines in fabrication and design. Monitoring biochemical species such as glucose and tracking physiological parameters such as oxygen saturation using near-infrared spectroscopic methods demonstrate modes of utility in biomedicine. These concepts provide versatile capabilities in biomedical diagnosis, therapy, deep-tissue imaging and surgery, and suggest a broad range of opportunities for silicon photonics in bioresorbable technologies.
机译:光学技术在生物学研究和临床护理中均提供重要的功能。最近的兴趣是可植入装置,其在有限的时间段内提供与生物组织的紧密光学耦合,然后经历完全的生物吸收进入良性产品,从而用作诊断和/或治疗的临时植入物。此处提出的结果建立了一个基于硅的,可生物吸收的光子平台,该平台依赖于被聚合物封装的单晶硅细丝,作为柔性,瞬态光波导,用于在生物系统中的目标位置进行精确的光传输和传感。与从晶片级材料弯曲和展开波导相关的机械和光学特性的综合研究为制造和设计建立了通用准则。使用近红外光谱法监测生物化学物质(例如葡萄糖)和跟踪生理参数(例如氧饱和度)证明了在生物医学中的应用模式。这些概念在生物医学诊断,治疗,深层组织成像和手术中提供了多种功能,并为生物可吸收技术中的硅光子学提供了广泛的机会。

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