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同步加速器的双能 CT:用于神经血管研究的小猪模型。

Dual energy CT at the synchrotron: a piglet model for neurovascular research.

机构信息

University of Saskatchewan, Saskatoon, SK, Canada.

出版信息

Eur J Radiol. 2011 Aug;79(2):323-7. doi: 10.1016/j.ejrad.2010.07.002. Epub 2010 Aug 21.

Abstract

BACKGROUND

Although the quality of imaging techniques available for neurovascular angiography in the hospital environment has significantly improved over the last decades, the equipment used for clinical work is not always suited for neurovascular research in animal models. We have previously investigated the suitability of synchrotron-based K-edge digital subtraction angiography (KEDSA) after intravenous injection of iodinated contrast agent for neurovascular angiography in radiography mode in both rabbit and pig models. We now have used the KEDSA technique for the acquisition of three-dimensional images and dual energy CT.

MATERIALS AND METHODS

All experiments were conducted at the biomedical beamline ID 17 of the European Synchrotron Radiation Facility (ESRF). A solid state germanium (Ge) detector was used for the acquisition of image pairs at 33.0 and 33.3 keV. Three-dimensional images were reconstructed from an image series containing 60 single images taken throughout a full rotation of 360°. CT images were reconstructed from two half-acquisitions with 720 projections each.

RESULTS

The small detector field of view was a limiting factor in our experiments. Nevertheless, we were able to show that dual energy CT using the KEDSA technique available at ID 17 is suitable for neurovascular research in animal models.

摘要

背景

尽管过去几十年来,医院环境中用于神经血管造影的成像技术的质量有了显著提高,但用于临床工作的设备并不总是适合动物模型中的神经血管研究。我们之前已经研究了在静脉注射碘造影剂后,使用基于同步加速器的 K 边数字减影血管造影(KEDSA)在兔和猪模型中的放射摄影模式下进行神经血管造影的适用性。现在,我们已经使用 KEDSA 技术来获取三维图像和双能 CT。

材料和方法

所有实验均在欧洲同步辐射设施(ESRF)的生物医学光束线 ID 17 上进行。使用固态锗(Ge)探测器在 33.0 和 33.3keV 处采集图像对。从包含整个 360°旋转的 60 张单张图像的图像系列中重建三维图像。从每个包含 720 个投影的两个半采集重建 CT 图像。

结果

小探测器视野是我们实验中的一个限制因素。尽管如此,我们还是能够表明,ID 17 上提供的 KEDSA 技术的双能 CT 适用于动物模型中的神经血管研究。

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