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亨斯菲尔德单位的定量理论及其在双能扫描中的应用。

A quantitative theory of the Hounsfield unit and its application to dual energy scanning.

作者信息

Brooks R A

出版信息

J Comput Assist Tomogr. 1977 Oct;1(4):487-93. doi: 10.1097/00004728-197710000-00016.

Abstract

A standard definition is proposed for the Hounsfield number. Any number in computed tomography can be converted to the Hounsfield scale after performing a simple calibration using air and water. The energy dependence of the Hounsfield number, H, is given by the expression H = (Hc + Hp Q)/(1 + Q), where Hc and Hp are the Compton and photoelectric coefficients of the material being measured, expressed in Hounsfield units, and Q is the "quality factor" of the scanner. Q can be measured by performing a scan of a single calibrating material, such as a potassium iodine solution. By applying this analysis to dual energy scans, the Compton and photoelectric coefficients of an unknown substance may easily be obtained. This can lead to a limited degree of chemical identification.

摘要

提出了亨斯菲尔德数的标准定义。在使用空气和水进行简单校准后,计算机断层扫描中的任何数字都可以转换为亨斯菲尔德尺度。亨斯菲尔德数H的能量依赖性由表达式H = (Hc + Hp Q)/(1 + Q)给出,其中Hc和Hp是被测材料的康普顿系数和光电系数,以亨斯菲尔德单位表示,Q是扫描仪的“品质因数”。Q可以通过对单一校准材料(如碘化钾溶液)进行扫描来测量。通过将这种分析应用于双能扫描,可以轻松获得未知物质的康普顿系数和光电系数。这可以实现有限程度的化学识别。

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