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摘要
En 中文
The past quarter century has witnessed rapid developments of fluorescence microscopy techniques that enable structural and functional imaging of biological specimens at unprecedented depth and resolution. The performance of these methods in multicellular organisms, however, is degraded by sample-induced optical aberrations. Here I I I review recent work on incorporating adaptive optics, a technology originally applied in astronomical telescopes to combat atmospheric aberrations, to improve image quality of fluorescence microscopy for biological imaging.
Keyword:
STRUCTURED ILLUMINATION MICROSCOPY
EMISSION DEPLETION MICROSCOPY
SINGLE-MOLECULE LOCALIZATION
SPECIMEN-INDUCED ABERRATIONS
WAVE-FRONT CORRECTION
PROTEIN GUIDE-STARS
MULTIPHOTON MICROSCOPY
CONFOCAL MICROSCOPY
2-PHOTON MICROSCOPY
IN-VIVO
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期刊
IF:
32.1
论文数:
7.2K
被引数:
12.7W
机构
引用论文
Rapid adaptive optical recovery of optimal resolution over large volumes大体积下最佳分辨率的快速自适应光学恢复
NATURE METHODS
IF32.1
PSF shaping using adaptive optics for three-dimensional single-molecule super-resolution imaging and tracking
OPTICS EXPRESS
IF3.3
Shack-Hartmann wavefront-sensor-based adaptive optics system for multiphoton microscopy基于shack-hartmann波前传感器的多光子显微自适应光学系统

