显微镜
光学
纳米尺度
分辨率(逻辑)
纳米
光激活定位显微镜
图像分辨率
超分辨显微术
材料科学
迭代重建
纳米技术
物理
扫描共焦电子显微镜
计算机科学
计算机视觉
人工智能
作者
Bo Huang,Wen-Qin Wang,Mark Bates,Xiaowei Zhuang
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2008-01-04
卷期号:319 (5864): 810-813
被引量:2652
标识
DOI:10.1126/science.1153529
摘要
Recent advances in far-field fluorescence microscopy have led to substantial improvements in image resolution, achieving a near-molecular resolution of 20 to 30 nanometers in the two lateral dimensions. Three-dimensional (3D) nanoscale-resolution imaging, however, remains a challenge. We demonstrated 3D stochastic optical reconstruction microscopy (STORM) by using optical astigmatism to determine both axial and lateral positions of individual fluorophores with nanometer accuracy. Iterative, stochastic activation of photoswitchable probes enables high-precision 3D localization of each probe, and thus the construction of a 3D image, without scanning the sample. Using this approach, we achieved an image resolution of 20 to 30 nanometers in the lateral dimensions and 50 to 60 nanometers in the axial dimension. This development allowed us to resolve the 3D morphology of nanoscopic cellular structures.
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