Coherent optical adaptive technique improves the spatial resolution of STED microscopy in thick samples

被引:0
|
作者
WEI YAN [1 ,2 ]
YANLONG YANG [3 ]
YU TAN [2 ]
XUN CHEN [2 ]
YANG LI [2 ]
JUNLE QU [1 ]
TONG YE [2 ,4 ]
机构
[1] Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province,College of Optoelectronic Engineering,Shenzhen University
[2] Department of Bioengineering and the COMSET,Clemson University
[3] State Key Laboratory of Transient Optics and Photonics,Xi’an Institute of Optics and Precision Mechanics,Chinese Academy of Science
[4] Department of Regenerative Medicine and Cell Biology,Medical University of South Carolina
基金
中国国家自然科学基金; 美国国家科学基金会; 中国博士后科学基金;
关键词
STED; is; Coherent optical adaptive technique improves the spatial resolution of STED microscopy in thick samples; of; in;
D O I
暂无
中图分类号
TH742 [显微镜];
学科分类号
0803 ;
摘要
Stimulated emission depletion(STED) microscopy is one of far-field optical microscopy techniques that can provide sub-diffraction spatial resolution. The spatial resolution of the STED microscopy is determined by the specially engineered beam profile of the depletion beam and its power. However, the beam profile of the depletion beam may be distorted due to aberrations of optical systems and inhomogeneity of a specimen’s optical properties, resulting in a compromised spatial resolution. The situation gets deteriorated when thick samples are imaged. In the worst case, the severe distortion of the depletion beam profile may cause complete loss of the superresolution effect no matter how much depletion power is applied to specimens. Previously several adaptive optics approaches have been explored to compensate aberrations of systems and specimens. However, it is difficult to correct the complicated high-order optical aberrations of specimens. In this report, we demonstrate that the complicated distorted wavefront from a thick phantom sample can be measured by using the coherent optical adaptive technique. The full correction can effectively maintain and improve spatial resolution in imaging thick samples.
引用
收藏
页码:176 / 181
页数:6
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