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基于共轭视图的活性定量的 CT 系统的个体化全身衰减校正图谱:方法开发和评估。

Patient-specific whole-body attenuation correction maps from a CT system for conjugate-view-based activity quantification: method development and evaluation.

机构信息

Department of Medical Radiation Physics, Lund University, Lund, Sweden.

出版信息

Cancer Biother Radiopharm. 2012 Dec;27(10):652-64. doi: 10.1089/cbr.2011.1082.

DOI:10.1089/cbr.2011.1082
PMID:23210927
Abstract

For activity quantification based on planar scintillation camera measurements, photon attenuation is an important factor that needs to be corrected for in a patient- and organ-specific manner. One possibility for obtaining attenuation correction maps is to use X-ray CT scout images. Since the intensity of scout images is in relative numbers, their image values need to be multiplied by a factor to become quantitative and thus useful for attenuation correction. The calibration factor can for our current imaging system be obtained from a scanner system file, but is generally not available. For this purpose, a method based on the patient weight has been developed. Results based on 79 patient scout images show that the calibration factor thus determined correlates well with values that, in this case, are independently specified by the system. The accuracy of attenuation correction factors (ACFs) derived from the scout-based attenuation correction maps is evaluated by comparison to ACFs derived from three-dimensional CT studies. For photon energies of 208, 245, and 364 keV, scout-based ACFs are on average 1.2% and 0.5% from the CT-derived values, using the system-based and the weight-based values of the scout-image calibration factor, respectively. The imprecision is somewhat higher for the weight-based method, due to variability in the delineation of the patient contour used as a part of this method. In conclusion, X-ray scouts are found useful for attenuation correction with a satisfactory accuracy obtained, both using the new, weight-based method, and using the previous, system-based method, for determining the required calibration factor.

摘要

对于基于平面闪烁相机测量的活动定量,光子衰减是需要以患者和器官特异性方式进行校正的重要因素。获得衰减校正图的一种可能性是使用 X 射线 CT 扫描图像。由于扫描图像的强度是相对数值,因此需要将其图像值乘以一个因子才能变为定量值,从而可用于衰减校正。对于我们当前的成像系统,校准因子可以从扫描仪系统文件中获得,但通常无法获得。为此,已经开发了一种基于患者体重的方法。基于 79 个患者扫描图像的结果表明,由此确定的校准因子与在这种情况下由系统独立指定的值很好地相关。通过与来自三维 CT 研究的衰减校正因子 (ACF) 进行比较来评估基于扫描的衰减校正图的 ACF 的准确性。对于光子能量为 208、245 和 364keV,分别使用基于系统和基于体重的扫描图像校准因子值,基于扫描的 ACF 比 CT 衍生值平均低 1.2%和 0.5%。基于体重的方法的不准确性略高,这是由于用于该方法的患者轮廓描绘的可变性所致。总之,X 射线扫描图像对于衰减校正非常有用,可以获得令人满意的准确性,无论是使用新的基于体重的方法还是使用以前的基于系统的方法来确定所需的校准因子。

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