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Nanoparticle-assisted-multiphoton microscopy for in vivo brain imaging of mice

机译:纳米粒子辅助 - 多光子显微镜,用于小鼠体内脑成像

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Neuro/brain study has attracted much attention during past few years, and many optical methods have been utilized in order to obtain accurate and complete neural information inside the brain. Relying on simultaneous absorption of two or more near-infrared photons by a fluorophore, multiphoton microscopy can achieve deep tissue penetration and efficient light detection noninvasively, which makes it very suitable for thick-tissue and in vivo bioimaging. Nanoparticles possess many unique optical and chemical properties, such as anti-photobleaching, large multiphoton absorption cross-section, and high stability in biological environment, which facilitates their applications in long-term multiphoton microscopy as contrast agents. In this paper, we will introduce several typical nanoparticles (e.g. organic dye doped polymer nanoparticles and gold nanorods) with high multiphoton fluorescence efficiency. We further applied them in two- and three-photon in vivo functional brain imaging of mice, such as brain-microglia imaging, 3D architecture reconstruction of brain blood vessel, and blood velocity measurement.
机译:在过去几年中,神经/大脑研究引起了很多关注,并且已经利用了许多光学方法,以便在大脑内获得准确和完整的神经信息。通过荧光团同时吸收两种或更多种近红外光子,多光子显微镜可实现深层组织渗透和有效的光检测,这使其非常适合于厚组织和体内生物体。纳米颗粒具有许多独特的光学和化学性质,例如抗光博均衡,大的多光子吸收横截面和生物环境中的高稳定性,这促进了它们在长期多相显微镜中的应用作为造影剂。在本文中,我们将引入几种典型的纳米颗粒(例如有机染料掺杂的聚合物纳米颗粒和金纳米棒),具有高多孔荧光效率。我们进一步将它们应用于小鼠的体内和三光子中,例如脑微胶质显像,脑血管的3D架构重建,以及血液速度测量。

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