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用于放射学和放射摄影教学的 X 射线系统模拟软件工具。

X-ray system simulation software tools for radiology and radiography education.

机构信息

Specialist Science Education Department, Leeds Institute of Cardiovascular and Metabolic Medicine, School of Medicine, University of Leeds, Leeds, UK.

Specialist Science Education Department, Leeds Institute of Cardiovascular and Metabolic Medicine, School of Medicine, University of Leeds, Leeds, UK.

出版信息

Comput Biol Med. 2018 Feb 1;93:175-183. doi: 10.1016/j.compbiomed.2017.12.005. Epub 2017 Dec 13.

Abstract

OBJECTIVES

To develop x-ray simulation software tools to support delivery of radiological science education for a range of learning environments and audiences including individual study, lectures, and tutorials.

METHODS

Two software tools were developed; one simulated x-ray production for a simple two dimensional radiographic system geometry comprising an x-ray source, beam filter, test object and detector. The other simulated the acquisition and display of two dimensional radiographic images of complex three dimensional objects using a ray casting algorithm through three dimensional mesh objects. Both tools were intended to be simple to use, produce results accurate enough to be useful for educational purposes, and have an acceptable simulation time on modest computer hardware. The radiographic factors and acquisition geometry could be altered in both tools via their graphical user interfaces. A comparison of radiographic contrast measurements of the simulators to a real system was performed.

RESULTS

The contrast output of the simulators had excellent agreement with measured results. The software simulators were deployed to 120 computers on campus.

CONCLUSIONS

The software tools developed are easy-to-use, clearly demonstrate important x-ray physics and imaging principles, are accessible within a standard University setting and could be used to enhance the teaching of x-ray physics to undergraduate students.

ADVANCES IN KNOWLEDGE

Current approaches to teaching x-ray physics in radiological science lack immediacy when linking theory with practice. This method of delivery allows students to engage with the subject in an experiential learning environment.

摘要

目的

开发 X 射线模拟软件工具,以支持各种学习环境和受众的放射科学教育,包括个人学习、讲座和辅导。

方法

开发了两种软件工具;一种模拟了简单二维射线照相系统几何形状的 X 射线产生,该系统包括 X 射线源、射线滤光器、测试对象和探测器。另一种使用射线投射算法通过三维网格对象模拟复杂三维物体的二维射线照相图像的获取和显示。这两种工具都旨在易于使用,产生足够准确的结果,可用于教育目的,并且在适度的计算机硬件上具有可接受的模拟时间。两种工具都可以通过其图形用户界面更改射线照相因子和采集几何形状。对模拟器的射线照相对比度测量值与真实系统进行了比较。

结果

模拟器的对比度输出与测量结果具有极好的一致性。该软件模拟器已部署到校园内的 120 台计算机上。

结论

开发的软件工具易于使用,清晰地演示了重要的 X 射线物理和成像原理,可在标准大学环境中使用,并可用于增强本科生的 X 射线物理教学。

知识进展

当前在放射科学中教授 X 射线物理的方法在将理论与实践联系起来时缺乏即时性。这种交付方式使学生能够在体验式学习环境中参与该主题。

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