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Depth-Resolved Multispectral Sub-Surface Imaging Using Multifunctional Upconversion Phosphors with Paramagnetic Properties

机译:使用具有顺磁特性的多功能上转换磷光体的深度分辨多光谱子表面成像

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摘要

Molecular imaging is very promising technique used for surgical guidance, which requires advancements related to properties of imaging agents and subsequent data retrieval methods from measured multispectral images. In this article, an upconversion material is introduced for subsurface near-infrared imaging and for the depth recovery of the material embedded below the biological tissue. The results confirm significant correlation between the analytical depth estimate of the material under the tissue and the measured ratio of emitted light from the material at two different wavelengths. Experiments with biological tissue samples demonstrate depth resolved imaging using the rare earth doped multifunctional phosphors. In vitro tests reveal no significant toxicity, whereas the magnetic measurements of the phosphors show that the particles are suitable as magnetic resonance imaging agents. The confocal imaging of fibroblast cells with these phosphors reveals their potential for in vivo imaging. The depth-resolved imaging technique with such phosphors has broad implications for real-time intraoperative surgical guidance.
机译:分子成像技术是用于外科手术指导的非常有前途的技术,它需要与成像剂的特性和从测得的多光谱图像中获取后续数据的方法有关的进步。在本文中,介绍了一种上转换材料,用于地下近红外成像以及用于埋藏在生物组织下方的材料的深度恢复。结果证实了在组织之下的材料的分析深度估计与在两种不同波长下从该材料发射的光的测量比率之间的显着相关性。生物组织样品的实验证明了使用稀土掺杂的多功能磷光体的深度分辨成像。体外测试显示没有明显的毒性,而荧光粉的磁性测量表明该颗粒适合用作磁共振成像剂。用这些荧光粉对成纤维细胞进行共聚焦成像显示了它们在体内成像的潜力。这种荧光粉的深度分辨成像技术对实时术中手术指导具有广泛的意义。

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