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Label-free assessment of hemodynamics in individual cortical brain vessels using third harmonic generation microscopy

机译:使用三次谐波显微镜在无标记的情况下评估单个皮质脑血管的血流动力学

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摘要

We show that third harmonic generation (THG) microscopy using a 1-MHz train of 1,300-nm femtosecond duration laser pulses enabled visualization of the structure and quantification of flow speed in the cortical microvascular network of mice to a depth of > 1 mm. Simultaneous three-photon imaging of an intravascular fluorescent tracer enabled us to quantify the cell free layer thickness. Using the label-free imaging capability of THG, we measured flow speed in different types of vessels with and without the presence of an intravascular tracer conjugated to a high molecular weight dextran (2 MDa FITC-dextran, 5% w/v in saline, 100 µl). We found a ∼20% decrease in flow speeds in arterioles and venules due to the dextran-conjugated FITC, which we confirmed with Doppler optical coherence tomography. Capillary flow speeds did not change, although we saw a ∼7% decrease in red blood cell flux with dextran-conjugated FITC injection.
机译:我们显示,使用1 MHz的1,300 nm飞秒持续时间激光脉冲的三次谐波生成(THG)显微镜,可以使结构的可视化和小鼠皮层微血管网络中流速的定量化达到1 mm以上的深度。血管内荧光示踪剂的同时三光子成像使我们能够量化无细胞层的厚度。使用THG的无标记成像功能,我们测量了在有和没有与高分子量右旋糖酐(2 MDa FITC-右旋糖酐,盐水中5%w / v, 100微升)。我们发现,由于右旋糖酐共轭FITC,小动脉和小静脉的流速降低了约20%,我们用多普勒光学相干断层扫描技术证实了这一点。毛细管流速没有变化,尽管我们发现右旋糖酐偶联的FITC注射后红细胞通量下降了约7%。

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