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存储发光计算机断层扫描

Stored luminescence computed tomography.

作者信息

Cong Wenxiang, Wang Chao, Wang Ge

出版信息

Appl Opt. 2014 Sep 1;53(25):5672-6. doi: 10.1364/AO.53.005672.

Abstract

Phosphor nanoparticles made of doped semiconductors and pre-excited by x-ray radiation were recently reported for their luminescence emission in the range of 650-770 nm upon near-infrared (NIR) light stimulation. These nanophosphors can be functionalized as optical probes for molecular imaging. In this paper, we present stored luminescence computed tomography to reconstruct a nanophosphor distribution in an object. The propagation of x rays in a biological object allows significantly better localization and deeper penetration. Moreover, the nanophosphors, which are pre-excited with collimated x-ray beams or focused x-ray waves, can be successively stimulated for stored luminescence emissions by variable NIR stimulation patterns. The sequentially detected luminescence signals provide more information of a nanophosphor spatial distribution for more accurate image reconstruction and higher image resolution. A realistic numerical study is performed to demonstrate the feasibility and merits of the proposed approach.

摘要

最近有报道称,由掺杂半导体制成并经X射线辐射预激发的磷光纳米颗粒,在近红外(NIR)光刺激下会发出650-770纳米范围内的发光。这些纳米磷光体可作为分子成像的光学探针进行功能化。在本文中,我们提出了存储发光计算机断层扫描技术,以重建物体中的纳米磷光体分布。X射线在生物物体中的传播能够实现更好的定位和更深的穿透。此外,用准直X射线束或聚焦X射线波预激发的纳米磷光体,可以通过可变的近红外刺激模式连续刺激以产生存储发光。顺序检测到的发光信号为更准确的图像重建和更高的图像分辨率提供了更多关于纳米磷光体空间分布的信息。进行了一项实际数值研究,以证明所提出方法的可行性和优点。

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