共域化
纳米技术
扫描电镜
荧光
可视化
荧光寿命成像显微镜
分子成像
活体细胞成像
细胞
超分辨率
生物
计算生物学
计算机科学
神经科学
人工智能
物理
材料科学
光学
遗传学
图像(数学)
生物技术
体内
作者
Steffen J. Sahl,Stefan W. Hell,Stefan Jakobs
摘要
Fluorescence nanoscopy uniquely combines minimally invasive optical access to the internal nanoscale structure and dynamics of cells and tissues with molecular detection specificity. While the basic physical principles of 'super-resolution' imaging were discovered in the 1990s, with initial experimental demonstrations following in 2000, the broad application of super-resolution imaging to address cell-biological questions has only more recently emerged. Nanoscopy approaches have begun to facilitate discoveries in cell biology and to add new knowledge. One current direction for method improvement is the ambition to quantitatively account for each molecule under investigation and assess true molecular colocalization patterns via multi-colour analyses. In pursuing this goal, the labelling of individual molecules to enable their visualization has emerged as a central challenge. Extending nanoscale imaging into (sliced) tissue and whole-animal contexts is a further goal. In this Review we describe the successes to date and discuss current obstacles and possibilities for further development.
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