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物体位置对NewTom 3G锥形束计算机断层扫描设备中密度测量及亨氏单位转换的影响

Effect of object location on the density measurement and Hounsfield conversion in a NewTom 3G cone beam computed tomography unit.

作者信息

Lagravère M O, Carey J, Ben-Zvi M, Packota G V, Major P W

机构信息

Orthodontic Graduate Program, Faculty of Medicine and Dentistry, University of Alberta, Canada.

出版信息

Dentomaxillofac Radiol. 2008 Sep;37(6):305-8. doi: 10.1259/dmfr/65993482.

Abstract

OBJECTIVES

The purpose of this study was to determine the effect of an object's location in a cone beam CT imaging chamber (CBCT-NewTom 3G) on its apparent density and to develop a linear conversion coefficient for Hounsfield units (HU) to material density (g cm(-3)) for the NewTom 3G Scanner.

METHODS

Three cylindrical models of materials with different densities were constructed and scanned at five different locations in a NewTom 3G Volume Scanner. The average HU value for each model at each location was obtained using two different types of software. Next, five cylinders of different known densities were scanned at the exact centre of a NewTom 3G Scanner. The collected data were analysed using the same two types of software to determine a standard linear relationship between density and HU for each type of software.

RESULTS

There is no statistical significance of location of an object within the CBCT scanner on determination of its density. A linear relationship between the density of an object and the HU of a scan was rho = 0.001(HU)+1.19 with an R2 value of 0.893 (where density, rho, is measured in g cm(-3)). This equation is to be used on a range between 1.42 g cm(-3) and 0.4456 g cm(-3).

CONCLUSIONS

A linear relationship can be used to determine the density of materials (in the density range of bone) from the HU values of a CBCT scan. This relationship is not affected by the object's location within the scanner itself.

摘要

目的

本研究旨在确定锥形束CT成像腔室(CBCT - NewTom 3G)中物体位置对其表观密度的影响,并为NewTom 3G扫描仪开发一个将亨氏单位(HU)转换为物质密度(g/cm³)的线性转换系数。

方法

构建了三种不同密度材料的圆柱形模型,并在NewTom 3G容积扫描仪的五个不同位置进行扫描。使用两种不同类型的软件获取每个模型在每个位置的平均HU值。接下来,在NewTom 3G扫描仪的精确中心扫描五个已知密度的圆柱体。使用相同的两种软件对收集的数据进行分析,以确定每种软件类型下密度与HU之间的标准线性关系。

结果

CBCT扫描仪内物体的位置对其密度的测定没有统计学意义。物体密度与扫描的HU之间的线性关系为rho = 0.001(HU)+1.19,R²值为0.893(其中密度rho以g/cm³为单位)。该方程适用于1.42 g/cm³至0.4456 g/cm³的范围。

结论

可以使用线性关系从CBCT扫描的HU值确定材料的密度(在骨密度范围内)。这种关系不受物体在扫描仪内位置的影响。

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