多路复用
材料科学
纳米颗粒
图像分辨率
纳米技术
临床前影像学
光学成像
光电子学
发光
发光测量
散射
光学滤波器
分析物
生物传感器
兴奋剂
分辨率(逻辑)
生物成像
分子成像
医学影像学
时间分辨率
光散射
体内
作者
Jiayi Xu,Jiang Ming,Mingzhu Yang,Hongyue Liu,Liuyi Yang,Zi-Han Chen,Jiyao Li,Xiaohan Wang,Yong Fan,Fan Zhang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2026-03-02
卷期号:26 (9): 3171-3180
标识
DOI:10.1021/acs.nanolett.5c06370
摘要
Optical imaging serves as a powerful tool for real-time visualization of biological processes, yet high-fidelity multiplexed and quantitative imaging in deep tissue remains challenging. In the second near-infrared (NIR-II, 1000–2000 nm) window, especially the long-wavelength subregion (NIR-II-L, 1500–1900 nm) with minimized photon scattering and an enhanced signal-to-noise ratio, multiplexed luminescence probes are highly desirable for dynamic imaging and quantitative sensing. Herein, we report the first dual-excitation (690 and 785 nm) ratiometric Tm3+ nanoparticles (TmNPs) with enhanced emission at 1632 nm via Yb3+ doping. This design enables robust ratiometric quantification with minimal coefficients of variation (<10%), allowing real-time blood oxygen quantification in ischemia and reperfusion. Moreover, it facilitates wide-field multiplexed vasculature and lymphatic imaging without filter switching or refocusing, achieving consistent spatial resolution across channels. This work provides a novel probe platform for high-fidelity dynamic sensing and multiplexing in the NIR-II-L window, advancing preclinical diagnostics and biomedical research.
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