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High-Throughput Nonlinear Optical Microscopy
DOI:10.1016/j.bpj.2013.08.051.png)
摘要
En 中文
High-resolution microscopy methods based on different nonlinear optical (NLO) contrast mechanisms are finding numerous applications in biology and medicine. While the basic implementations of these microscopy methods are relatively mature, an important direction of continuing technological innovation lies in improving the throughput of these systems. Throughput improvement is expected to be important for studying fast kinetic processes, for enabling clinical diagnosis and treatment, and for extending the field of image informatics. This review will provide an overview of the fundamental limitations on NLO microscopy throughput. We will further cover several important classes of high-throughput NLO microscope designs with discussions on their strengths and weaknesses and their key biomedical applications. Finally, this review will close with a perspective of potential future technological improvements in this field.
Keyword:
MULTIFOCAL MULTIPHOTON MICROSCOPY
EXCITATION FLUORESCENCE MICROSCOPY
TEMPORAL FOCUSING CHARACTERISTICS
2-PHOTON SCANNING MICROSCOPE
RAMAN SCATTERING MICROSCOPY
IN-VIVO
NEURONAL-ACTIVITY
AUTOMATED MICROSCOPY
HUMAN SKIN
INHIBITORS
AI总结
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期刊
IF:
3.1
论文数:
5.1W
被引数:
4.4W

