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Breaking the optical difraction barrier with nanophotonics - Ultrahigh-resolution bioimaging and biosensing in the subwavelength nanometric range with nanobiophotonic technologies

机译:纳米光子技术打破光学衍射的障碍-纳米生物光子技术可在亚波长纳米范围内实现超高分辨率生物成像和生物传感

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The main goal of this study is to develop novel fiber-optic-based nanobiophotonics techniques for noninvasive imaging and biosensing optical properties of cellular and tissue samples beyond the diffraction barrier in the subwavelength nanoscale range. The work covers fundamental principles, recent developments, and trends in advanced nanobiophotonics techniques exploited for either minimally invasive diagnostics and imaging in biomedicine at cellular/intracellular level or development of nanosensors and nanostructured materials. Somerecently developed advanced ultrahigh-resolution nanotechnologies such as confocal nanoscopy and fiber-optic-based nanosensors, will also be discussed. These technologies allow one to break the theoretical optical diffraction barrier and to work in the subwavelength nanoscale range
机译:这项研究的主要目的是开发新的基于光纤的纳米生物光子学技术,用于在亚波长纳米级范围内超出衍射屏障的细胞和组织样品的无创成像和生物传感光学特性。这项工作涵盖了基本原理,最新发展以及先进的纳米生物光子学技术的发展趋势,这些技术可用于细胞/细胞内水平的生物医学中的微创诊断和成像或纳米传感器和纳米结构材料的开发。还将讨论最近开发的先进超高分辨率纳米技术,例如共聚焦纳米技术和基于光纤的纳米传感器。这些技术使人们可以打破理论上的光学衍射障碍,并在亚波长纳米范围内工作

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