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Depth-resolved imaging and detection of micro-retroreflectors within biological tissue using Optical Coherence Tomography

机译:光学相干断层扫描技术在生物组织内的深度分辨成像和微反射镜检测

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摘要

A new approach to in vivo biosensor design is introduced, based on the use of an implantable micron-sized retroreflector-based platform and non-invasive imaging of its surface reflectivity by Optical Coherence Tomography (OCT). The possibility of using OCT for the depth-resolved imaging and detection of micro-retroreflectors in highly turbid media, including tissue, is demonstrated. The maximum imaging depth for the detection of the micro-retroreflector-based platform within the surrounding media was found to be 0.91 mm for porcine tissue and 1.65 mm for whole milk. With further development, it may be possible to utilize OCT and micro-retroreflectors as a tool for continuous monitoring of analytes in the subcutaneous tissue.
机译:引入了一种新的体内生物传感器设计方法,该方法基于可植入的微米级基于逆向反射器的平台的使用,并通过光学相干断层扫描(OCT)对其表面反射率进行了非侵入式成像。证明了使用OCT在包括组织在内的高度混浊的介质中进行深度分辨成像和检测微反射镜的可能性。发现用于检测周围介质中基于微反射镜的平台的最大成像深度对于猪组织为0.91 mm,对于全脂牛奶为1.65 mm。随着进一步的发展,有可能利用OCT和微反射器作为连续监测皮下组织中分析物的工具。

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