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A high performance Sc-based nanoprobe for through-skull fluorescence imaging of brain vessels beyond 1500 nm

机译:高性能Sc-based nanoprobethrough-skull荧光成像的大脑船只超出1500海里

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摘要

Optical bioimaging that works in the second near infrared region (NIR-II, 1000.-1700 nm) has emerged as a next generation imaging technique with superior imaging sensitivity and spatial resolution compared to traditional optical imaging utilizing visible and near-infrared lights (below 900 nm). Herein, a new Sc-based NIR-II probe was explored for high performance NIR-II in vivo bioimaging and optical imaging-guided noninvasive brain blood vessel visualization. The lanthanide doped Sc-based probes (KSc2F7:Yb3+/Er3+) possess a pure orthorhombic phase structure with size control by adjusting the r ion content. These probes present a dominant red upconversion (UC) emission, which is significantly different from the traditional NaYF4:Yb/Er host, which usually has a green UC emission. More importantly, apart from the dominant red UC emission, these probes also possess a strong NIR-II downconversion (DC) emission centered at 1525 nm, which is usually ignored for bioimaging applications. In vivo NIR-II imaging reveals that our explored Sc-based nanorods are promising probes for highly sensitive optical imaging. Moreover, noninvasive through-skull fluorescence bioimaging of brain vessels with high spatial resolution was demonstrated. Therefore, it is expected that Sc-based nanomaterials with unique dominant red UC and DC NIR-II emissions beyond 1500 nm are ideal probes for bio-applications.
机译:光学bioimaging第二附近工作红外区(NIR-II, 1000。成为下一代成像技术以精良的成像灵敏度和空间相比传统的光学分辨率利用可见光和近红外成像灯(低于900海里)。NIR-II调查探讨了高性能NIR-II体内bioimaging和光学大脑成像制导的无创性血管可视化。探针(KSc2F7: Yb3 + / Er3 +)拥有一个纯粹的斜方晶系的相结构与尺寸控制调整r离子含量。主导红上转换(UC)排放从传统的显著不同吗NaYF4: Yb / Er主机,通常有一个绿色的加州大学发射。主导红色UC发射,这些探测器拥有一个强大的NIR-II downconversion (DC)发射中心在1525 nm,通常bioimaging应用程序忽略。我们探索Sc-based NIR-II成像显示纳米是高度承诺调查敏感的光学成像。through-skull荧光bioimaging的大脑船只与高空间分辨率演示。Sc-based纳米材料具有独特的占主导地位的红色加州大学和直流NIR-II排放超过1500海里理想的bio-applications探针。

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