您的位置: 专家智库 > >

国家自然科学基金(61078016)

作品数:2 被引量:4H指数:1
发文基金:国家自然科学基金国家重点基础研究发展计划更多>>
相关领域:一般工业技术电子电信更多>>

文献类型

  • 2篇中文期刊文章

领域

  • 1篇电子电信
  • 1篇一般工业技术

主题

  • 1篇NANOSC...
  • 1篇SINGLE...
  • 1篇BARRIE...
  • 1篇DIFFRA...
  • 1篇ENERGY...
  • 1篇FORSTE...
  • 1篇SUPER-...
  • 1篇SIDELO...
  • 1篇MICROS...
  • 1篇FAR-FI...
  • 1篇NANOPR...
  • 1篇CONFOC...

传媒

  • 1篇Scienc...
  • 1篇Journa...

年份

  • 1篇2014
  • 1篇2012
2 条 记 录,以下是 1-2
排序方式:
Nanoprobes for super-resolution fluorescence imaging at the nanoscale被引量:4
2014年
Compared with other imaging techniques,fluorescence microscopy has become an essential tool to study cell biology due to its high compatibility with living cells.Owing to the resolution limit set by the diffraction of light,fluorescence microscopy could not resolve the nanostructures in the range of<200 nm.Recently,many techniques have been emerged to overcome the diffraction barrier,providing nanometer spatial resolution.In the course of development,the progress in fluorescent probes has helped to promote the development of the high-resolution fluorescence nanoscopy.Here,we describe the contributions of the fluorescent probes to far-field super resolution imaging,focusing on concepts of the existing super-resolution nanoscopy based on the photophysics of fluorescent nanoprobes,like photoswitching,bleaching and blinking.Fluorescent probe technology is crucial in the design and implementation of super-resolution imaging methods.
HOU ShangGuoLIANG LeDENG SuHuiCHEN JianFangHUANG QingCHENG YaFAN ChunHai
关键词:SUPER-RESOLUTION
SUPPRESSION OF SIDELOBES IN SINGLE-PHOTON 4PI CONFOCAL MICROSCOPY BY FORSTER RESONANT ENERGY TRANSFER
2012年
Recently,we theoretically demonstrate that utilization of silica nanobeads co-doped with Cy3 and Cy5 molecules instead of single dye molecules asfluorescent labels can enable optical resolutions far beyond the diffraction-limit.Here,we show that by combining the 4Pi microscopy and the novelfluorescent label,it is possible to completely suppress the sidelobes in 4Pi focal spot and significantly enhance the optical resolution in the axial direction.
JIANFANG CHENYA CHENG
关键词:CONFOCAL
共1页<1>
聚类工具0