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利用世界上唯一的垂直极化同步加速器辐射束和单个非对称硅晶体进行医学应用的大视场 X 射线成像。

Large-view x-ray imaging for medical applications using the world's only vertically polarized synchrotron radiation beam and a single asymmetric Si crystal.

机构信息

Photon Factory, Institute of Materials Structure Science, KEK, Tsukuba, Japan.

The Graduate University for Advanced Studies, SOKENDAI, Tsukuba, Japan.

出版信息

Phys Med Biol. 2023 Sep 22;68(19). doi: 10.1088/1361-6560/acf640.

Abstract

X-ray microangiography provides detailed information on the internal structure and function of a biological subject. Its ability to evaluate the microvasculature of small animals is useful for acquiring basic and clinical medical knowledge. The following three conditions are necessary to attain detailed knowledge of biological functions: (1) high temporal resolution with sufficient x-ray intensity, (2) high spatial resolution, and (3) a wide field of view. Because synchrotron radiation microangiography systems provide high sapatial resolution and high temporal resolution as a result of their high x-ray intensity, such systems have been developed at various synchrotron radiation facilities, starting with the photon factory, leading to numerous medical discoveries. However, the three aforementioned functions are incompatible with the use of synchrotron radiation because the x-ray intensity decreases when a wide field of view is obtained. To overcome these problems, we developed a new x-ray optical system for microangiography in rats using synchrotron radiation x-rays.Instead of using monochromatic synchrotron radiation x-rays with a conventional double-crystal monochromator, we used white synchrotron radiation x-rays and an asymmetric Si crystal to simultaneously monochromatize the beam and widen the field of view.The intensity profile and spatial resolution of the x-ray images were then evaluated. The proposed x-ray optics increased the x-ray intensity and beam width by factors of 1.3 and 2.7, respectively, compared with those of conventional monochromatic x-rays. In addition,studies on microangiography in rats were performed to confirm that the images had sufficient intensity, spatial resolution, and field of view. One of a series of images taken at 50 ms framewas shown as an example.This x-ray optics provides sufficient x-ray intensity, high spatial resolution, and a wide field of view. This technique is expected providing new insights into the evaluation of the vascular system.

摘要

X 射线显微血管造影术可以提供有关生物主体内部结构和功能的详细信息。它评估小动物微血管的能力对于获取基础和临床医学知识非常有用。要详细了解生物功能,需要满足以下三个条件:(1)具有足够 X 射线强度的高时间分辨率,(2)高空间分辨率和(3)宽视场。由于同步辐射微血管造影系统具有高 X 射线强度,因此具有高空间分辨率和高时间分辨率,因此已经在各种同步辐射设施中开发了这种系统,从光子工厂开始,从而导致了许多医学发现。但是,由于宽视场时 X 射线强度会降低,因此上述三个功能与使用同步辐射不兼容。为了克服这些问题,我们使用同步辐射 X 射线为大鼠开发了一种新的微血管造影 X 射线光学系统。我们没有使用传统双晶单色器的单色同步辐射 X 射线,而是使用了白色同步辐射 X 射线和非对称 Si 晶体,同时对光束进行单色化并扩大视场。然后评估了 X 射线图像的强度分布和空间分辨率。与传统的单色 X 射线相比,所提出的 X 射线光学元件分别将 X 射线强度和光束宽度提高了 1.3 倍和 2.7 倍。此外,还进行了大鼠微血管造影研究,以确认图像具有足够的强度,空间分辨率和视场。以 50ms 帧拍摄的一系列图像中的一帧为例。这种 X 射线光学元件提供了足够的 X 射线强度,高空间分辨率和宽视场。该技术有望为评估血管系统提供新的见解。

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