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单光子发射计算机断层扫描中基于点散射分布函数的广义散射校正方法

Generalized scatter correction method in SPECT using point scatter distribution functions.

作者信息

Msaki P, Axelsson B, Dahl C M, Larsson S A

机构信息

Department of Radiation Physics, Karolinska Institute, Stockholm, Sweden.

出版信息

J Nucl Med. 1987 Dec;28(12):1861-9.

PMID:3500288
Abstract

A new two-dimensional (2-D) scatter correction technique in single photon emission computed tomography (SPECT) based on convolution or frequency filtering with a 2-D scatter distribution function is described. A scatter distribution function of the form A exp(-Br), has been derived from measurements of a point source in a water phantom. Both the amplitude A and the slope B of this function, were approximately invariant with source position except near phantom surface. The accuracy of the 2-D correction technique was compared with that of the previous one-dimensional (1-D) scatter correction technique. As could be expected the latter technique was shown to be less accurate due to its dependence on axial distribution of radioactivity. Phantom SPECT studies showed a clear superiority of the 2-D over the 1-D scatter correction in quantitative imaging. Images derived from clinical studies of regional bloodflow with 99mTc-HM-PAO and liver uptake showed significant contrast improvement by both techniques.

摘要

描述了一种基于二维散射分布函数卷积或频率滤波的单光子发射计算机断层扫描(SPECT)中的新型二维(2-D)散射校正技术。通过对水模体中一个点源的测量,得出了形式为A exp(-Br)的散射分布函数。除了在模体表面附近外,该函数的幅度A和斜率B均与源位置近似无关。将二维校正技术的准确性与先前的一维(1-D)散射校正技术的准确性进行了比较。正如预期的那样,后一种技术由于依赖于放射性的轴向分布而显示出较低的准确性。模体SPECT研究表明,在定量成像中二维散射校正明显优于一维散射校正。用99mTc-HM-PAO进行的局部血流临床研究和肝脏摄取的临床研究得出的图像显示,两种技术都使对比度有了显著改善。

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