首页> 外文期刊>Journal of nuclear medicine technology >X-Ray Imaging Physics for Nuclear Medicine Technologists. Part 1: Basic Principles of X-Ray Production
【24h】

X-Ray Imaging Physics for Nuclear Medicine Technologists. Part 1: Basic Principles of X-Ray Production

机译:核医学技术人员的X射线成像物理。第1部分:X射线产生的基本原理

获取原文
       

摘要

The purpose is to review in a 4-part series: (i) the basic principles of x-ray production, (ii) x-ray interactions and data capture/conversion, (iii) acquisition/creation of the CT image, and (iv) operational details of a modern multislice CT scanner integrated with a PET scanner. Advances in PET technology have lead to widespread applications in diagnostic imaging and oncologic staging of disease. Combined PET/CT scanners provide the high-resolution anatomic imaging capability of CT with the metabolic and physiologic information by PET, to offer a significant increase in information content useful for the diagnostician and radiation oncologist, neurosurgeon, or other physician needing both anatomic detail and knowledge of disease extent. Nuclear medicine technologists at the forefront of PET should therefore have a good understanding of x-ray imaging physics and basic CT scanner operation, as covered by this 4-part series. After reading the first article on x-ray production, the nuclear medicine technologist will be familiar with (a) the physical characteristics of x-rays relative to other electromagnetic radiations, including ?3-rays in terms of energy, wavelength, and frequency; (b) methods of x-ray production and the characteristics of the output x-ray spectrum; (c) components necessary to produce x-rays, including the x-ray tube/x-ray generator and the parameters that control x-ray quality (energy) and quantity; (d) x-ray production limitations caused by heating and the impact on image acquisition and clinical throughput; and (e) a glossary of terms to assist in the understanding of this information.
机译:目的是分四部分回顾:(i)X射线产生的基本原理,(ii)X射线相互作用和数据捕获/转换,(iii)CT图像的采集/创建,以及( iv)与PET扫描仪集成在一起的现代多层CT扫描仪的操作细节。 PET技术的进步已导致在诊断成像和疾病的肿瘤分期中广泛应用。组合的PET / CT扫描仪可提供CT的高分辨率解剖成像功能以及PET的代谢和生理信息,从而大大增加了信息含量,可用于诊断和放射肿瘤学家,神经外科医生或其他需要解剖细节和信息的医师对疾病程度的了解。因此,PET的最前沿的核医学技术人员应该对x射线成像物理学和CT扫描仪的基本操作有充分的了解,这一系列分为4部分。在阅读了有关X射线产生的第一篇文章之后,核医学技术人员将熟悉(a)X射线相对于其他电磁辐射的物理特性,包括在能量,波长和频率方面的?3-射线; (b)X射线的产生方法和输出X射线光谱的特征; (c)产生X射线所需的组件,包括X射线管/ X射线发生器以及控制X射线质量(能量)和数量的参数; (d)加热引起的X射线生产限制以及对图像采集和临床通量的影响; (e)术语表,以帮助理解此信息。

著录项

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