Perfecting and extending the near-infrared imaging window

窗口(计算) 遥感 光学 红外线的 计算机科学 电信 地质学 物理 万维网
作者
Zhe Feng,Tao Tang,Tianxiang Wu,Xiaoming Yu,Yuhuang Zhang,Meng Wang,Junyan Zheng,Yanyun Ying,Siyi Chen,Jing Zhou,Xiaoxiao Fan,Dan Zhang,Shengliang Li,Mingxi Zhang,Jun Qian
出处
期刊:Light-Science & Applications [Springer Nature]
卷期号:10 (1): 197-197 被引量:349
标识
DOI:10.1038/s41377-021-00628-0
摘要

In vivo fluorescence imaging in the second near-infrared window (NIR-II) has been considered as a promising technique for visualizing mammals. However, the definition of the NIR-II region and the mechanism accounting for the excellent performance still need to be perfected. Herein, we simulate the photon propagation in the NIR region (to 2340 nm), confirm the positive contribution of moderate light absorption by water in intravital imaging and perfect the NIR-II window as 900-1880 nm, where 1400-1500 and 1700-1880 nm are defined as NIR-IIx and NIR-IIc regions, respectively. Moreover, 2080-2340 nm is newly proposed as the third near-infrared (NIR-III) window, which is believed to provide the best imaging quality. The wide-field fluorescence microscopy in the brain is performed around the NIR-IIx region, with excellent optical sectioning strength and the largest imaging depth of intravital NIR-II fluorescence microscopy to date. We also propose 1400 nm long-pass detection in off-peak NIR-II imaging whose performance exceeds that of NIR-IIb imaging, using bright fluorophores with short emission wavelength.
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