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用于临床前 X 射线相衬计算机断层成像的原型龙门系统的开发。

Development of a prototype gantry system for preclinical x-ray phase-contrast computed tomography.

机构信息

Department of Physics, Technische Universität München, Garching, Germany.

出版信息

Med Phys. 2011 Nov;38(11):5910-5. doi: 10.1118/1.3644844.

Abstract

PURPOSE

To explore the potential of grating-based x-ray phase-contrast imaging for clinical applications, a first compact gantry system was developed. It is designed such that it can be implemented into an in-vivo small-animal phase-contrast computed tomography (PC-CT) scanner. The purpose of the present study is to assess the accuracy and quantitativeness of the described gantry in both absorption and phase-contrast.

METHODS

A phantom, containing six chemically well-defined liquids, was constructed. A tomography scan with cone-beam reconstruction of this phantom was performed yielding the spatial distribution of the linear attenuation coefficient μ and decrement δ of the complex refractive index. Theoretical values of μ and δ were calculated for each liquid from tabulated data and compared with the experimentally measured values. Additionally, a color-fused image representation is proposed to display the complementary absorption and phase-contrast information in a single image.

RESULTS

Experimental and calculated data of the phantom agree well confirming the quantitativeness and accuracy of the reconstructed spatial distributions of μ and δ. The proposed color-fused image representation, which combines the complementary absorption and phase information, considerably helps in distinguishing the individual substances.

CONCLUSIONS

The concept of grating-based phase-contrast computed tomography (CT) can be implemented into a compact, cone-beam geometry gantry setup. The authors believe that this work represents an important milestone in translating phase-contrast x-ray imaging from previous proof-of-principle experiments to first preclinical biomedical imaging applications on small-animal models.

摘要

目的

为了探索基于光栅的 X 射线相衬成像在临床应用中的潜力,开发了一种首个紧凑型龙门系统。该系统的设计目的是将其集成到体内小动物相衬计算机断层扫描(PC-CT)扫描仪中。本研究的目的是评估所描述的龙门架在吸收和相衬方面的准确性和定量性。

方法

构建了一个包含六种化学性质明确的液体的体模。对该体模进行了锥束重建的断层扫描,得到了线性衰减系数μ和复折射率衰减δ的空间分布。根据表格数据计算了每种液体的μ和δ的理论值,并将其与实验测量值进行了比较。此外,提出了一种彩色融合图像表示法,以在单个图像中显示互补的吸收和相衬信息。

结果

体模的实验和计算数据吻合良好,证实了μ和δ的重建空间分布的定量和准确性。所提出的彩色融合图像表示法,结合了互补的吸收和相衬信息,有助于区分各个物质。

结论

基于光栅的相衬计算机断层扫描(CT)的概念可以被集成到一个紧凑的、锥束几何的龙门架设置中。作者认为,这一工作代表了将相衬 X 射线成像从之前的原理验证实验转化为小动物模型的首个临床前生物医学成像应用的重要里程碑。

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