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Imaging of X-Ray-Excited Emissions from Quantum Dots and Biological Tissue in Whole Mouse

机译:全鼠中量子点和生物组织的X射线激发排放的成像

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Optical imaging in clinical and preclinical settings can provide a wealth of biological information, particularly when coupled with targetted nanoparticles, but optical scattering and absorption limit the depth and resolution in both animal and human subjects. Two new hybrid approaches are presented, using the penetrating power of X-rays to increase the depth of optical imaging. Foremost, we demonstrate the excitation by X-rays of quantum-dots (QD) emitting in the near-infrared (NIR), using a clinical X-ray system to map the distribution of QDs at depth in whole mouse. We elicit a clear, spatially-resolved NIR signal from deep organs (brain, liver and kidney) with short (1?second) exposures and tolerable radiation doses that will permit future in vivo applications. Furthermore, X-ray-excited endogenous emission is also detected from whole mouse. The use of keV X-rays to excite emission from QDs and tissue represent novel biomedical imaging technologies, and exploit emerging QDs as optical probes for spatial-temporal molecular imaging at greater depth than previously possible.
机译:临床和临床前设置中的光学成像可以提供丰富的生物信息,特别是当与靶标纳米颗粒结合时,但光散射和吸收限制了动物和人类受试者中的深度和分辨率。使用X射线的渗透功率提高了两个新的混合方法,以增加光学成像的深度。首先,我们使用临床X射线系统展示近红外(NIR)中发射的量子点(QD)的X射线激发,以将QDS的分布在整个鼠标中映射。我们在深奥的曝光(大脑,肝肾)中引出了一个清晰的空间分辨的NIR信号,短(1?二)曝光和耐受的辐射剂量,将允许在体内应用中的未来。此外,还从整个小鼠中检测到X射线激发的内源发射。使用Kev X射线从QD和组织中发射的激发发射代表了新的生物医学成像技术,并且利用QDS作为用于空间颞型分子成像的光学探针,其比以前更深度更深。

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