首页> 外文学位 >Line x-ray source for diffraction enhanced imaging in clinical and industrial applications.
【24h】

Line x-ray source for diffraction enhanced imaging in clinical and industrial applications.

机译:线X射线源,用于在临床和工业应用中进行衍射增强成像。

获取原文
获取原文并翻译 | 示例

摘要

Mammography is one type of imaging modalities that uses a low-dose x-ray or other radiation sources for examination of breasts. It plays a central role in early detection of breast cancers. The material similarity of tumor-cell and health cell, breast implants surgery and other factors, make the breast cancers hard to visualize and detect.; Diffraction enhanced imaging (DEI), first proposed and investigated by D. Chapman is a new x-ray radiographic imaging modality using monochromatic x-rays from a synchrotron source, which produced images of thick absorbing objects that are almost completely free of scatter. It shows dramatically improved contrast over standard imaging when applied to the same phantom. The contrast is based not only on attenuation but also on the refraction and diffraction properties of the sample. This imaging method may improve image quality of mammography, other medical applications, industrial radiography for non-destructive testing and x-ray computed tomography. However, the size, and cost, of a synchrotron source limits the application of the new modality to be applicable at clinical levels.; This research investigates the feasibility of a designed line x-ray source to produce intensity compatible to synchrotron sources. It is composed of a 2-cm in length tungsten filament, installed on a carbon steel filament cup (backing plate), as the cathode and a stationary oxygen-free copper anode with molybdenum coating on the front surface serves as the target. Characteristic properties of the line x-ray source were computationally studied and the prototype was experimentally investigated. SIMIION code was used to computationally study the electron trajectories emanating from the filament towards the molybdenum target. A Faraday cup on the prototype device, proof-of-principle, was used to measure the distribution of electrons on the target, which compares favorably to computational results. The intensities of characteristic x-ray for molybdenum, tungsten and rhodium targets were investigated with different window materials for -30kV to -100kV applied potential. Heat loading and thermal management of the target has been investigated computationally using COMSOL code package, and experimental measurements of target temperature rise was taken via thermocouples attached to the target. Temperature measurements for low voltage, low current regime without active cooling were compared to computational results for code-experiment benchmarking. Two different phantoms were used in the simulation of DEI images, which showed that the designed x-ray source with DEI setup could produce images with significant improved contrast.; The computational results, along with experimental measurements on the prototype setup, indicate the possibility of scale up to larger area x-ray source adequate for DEI applications.
机译:乳房X线照相术是使用低剂量X射线或其他放射源检查乳房的一种成像方式。它在乳腺癌的早期检测中起着核心作用。肿瘤细胞与健康细胞的材料相似性,乳房植入手术等因素,使得乳腺癌难以可视化和发现。 D. Chapman首先提出并研究了衍射增强成像(DEI),它是一种使用来自同步加速器源的单色X射线的新型X射线射线照相成像方式,可产生几乎完全没有散射的厚吸收物体的图像。当应用于相同的体模时,与标准成像相比,它显示出显着改善的对比度。对比度不仅基于衰减,而且还基于样品的折射和衍射特性。这种成像方法可以提高乳房X射线照相,其他医学应用,用于无损检测的工业射线照相和X射线计算机断层扫描的图像质量。然而,同步加速器源的尺寸和成本限制了这种新形式的应用,使其可应用于临床。这项研究调查了设计的线X射线源产生与同步辐射源兼容的强度的可行性。它由长度为2厘米的钨丝组成,该钨丝安装在碳钢丝杯(垫板)上,作为阴极,固定的无氧铜阳极(前表面镀有钼)用作靶材。对线X射线源的特性进行了计算研究,并对原型进行了实验研究。 SIMIION代码用于计算研究从灯丝向钼靶发射的电子轨迹。原型设备上的法拉第杯(原理证明)用于测量目标上电子的分布,与计算结果相比具有优势。在-30kV至-100kV施加电势下,用不同的窗口材料研究了钼,钨和铑靶材的特征X射线强度。使用COMSOL代码包对目标的热负荷和热管理进行了计算研究,并通过连接到目标的热电偶对目标温度上升进行了实验测量。在没有主动冷却的情况下,针对低电压,低电流状态的温度测量结果与用于代码实验基准测试的计算结果进行了比较。在DEI图像的仿真中使用了两种不同的体模,这表明设计的具有DEI设置的X射线源可以产生对比度显着提高的图像。计算结果以及对原型设置的实验测量表明,有可能放大到足以用于DEI应用的更大面积的X射线源。

著录项

  • 作者

    Wang, Xiaoqin.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Chemistry Nuclear.; Physics Radiation.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 146 p.
  • 总页数 146
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无机化学;原子核物理学、高能物理学;
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号