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Chang算法中使用的衰减图对定量单光子发射计算机断层扫描结果的影响。

Effects of the attenuation map used in the Chang algorithm on quantitative SPECT results.

作者信息

Cao Z, Holder L E

机构信息

Department of Diagnostic Radiology, University of Maryland Medical Center, Baltimore 21201-1595, USA.

出版信息

J Nucl Med Technol. 1998 Sep;26(3):178-85.

PMID:9755437
Abstract

OBJECTIVE

This study examined the effects on SPECT quantitation caused by erroneous size and position of the attenuation map and inaccurate pixel size used in the Chang algorithm.

METHODS

Projection data of a three-dimensional head phantom were simulated with a uniform attenuation coefficient of 0.15/cm for the inside of the phantom. Images were reconstructed using the filtered backprojection algorithm without attenuation compensation and the Chang algorithm with different attenuation maps. Quantitative comparison then was performed between the reconstructed images and the phantom.

RESULTS

The pixel values obtained for noisy data by using the first-order Chang algorithm with an accurate attenuation map were less than 10% different from the true values and the left-right asymmetry was under 5%. Small errors in the geometric parameters of the attenuation map, however, caused considerable quantitative inaccuracy in the reconstructed image. For example, a 0.64-cm error in the size of the map caused 10% deviation from the true value and a 0.64-cm shift of the position of the map towards the left produced 10% left-right pixel value asymmetry.

CONCLUSION

The accuracy of the Chang algorithm critically depends on the geometric parameters. For a uniform attenuator with symmetric geometry, such as the human brain, a true left-right symmetry in the pixel value can be altered significantly by a small error in the geometric parameters, while symmetry can be maintained with no attenuation compensation.

摘要

目的

本研究考察了衰减图的错误尺寸和位置以及Chang算法中使用的不准确像素尺寸对单光子发射计算机断层显像(SPECT)定量分析的影响。

方法

使用均匀衰减系数0.15/cm模拟三维头部模型内部的投影数据。图像通过未进行衰减补偿的滤波反投影算法以及使用不同衰减图的Chang算法进行重建。然后对重建图像和模型进行定量比较。

结果

使用具有准确衰减图的一阶Chang算法获得的噪声数据像素值与真实值的差异小于10%,左右不对称性低于5%。然而,衰减图几何参数的小误差会导致重建图像出现相当大的定量不准确。例如,图尺寸0.64 cm的误差会导致与真实值有10%的偏差,图位置向左偏移0.64 cm会产生10%的左右像素值不对称。

结论

Chang算法的准确性严重依赖于几何参数。对于具有对称几何结构的均匀衰减器,如人脑,几何参数的小误差可显著改变像素值的真正左右对称性,而不进行衰减补偿时可维持对称性。

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