Bentourkia M, Msaki P, Cadorette J, Lecomte R
Department of Nuclear Medicine and Radiobiology, University of Sherbrooke, Québec, Canada.
J Nucl Med. 1996 Dec;37(12):2040-6.
Although removal of object scatter has been shown to improve both contrast and quantitation accuracy, subtraction of detector scatter leads to marginal contrast enhancement and negligible resolution recovery at the expense of reduced sensitivity and increased statistical noise. Since detector scatter has correct information about radioactivity but slightly erroneous information about source location, we suggest that this component should be restored to preserve sensitivity and improve resolution.
A scatter correction model that consecutively removes object scatter and restores detector scatter is proposed. The scatter components are processed in the spatial domain using nonstationary scatter kernels. The detector scatter restoration kernel is obtained by piecewise inversion in the Fourier space. The model was tested using line source and hot spot phantom measurements.
Object scatter subtraction increased contrast substantively with no effect on resolution. Detector scatter restoration recovered resolution almost completely with modest contrast enhancement in small lesions. Spillover effects were reduced to less than 5% for hot spots > or = 3 x FWHM, at the expense of moderate noise amplification.
While subtraction of object scatter is necessary for contrast enhancement and quantitation accuracy, restoration of detector scatter preserves sensitivity and improves quantitation accuracy by reducing spillover effects in high-resolution PET.
尽管已证明去除物体散射可提高对比度和定量准确性,但减去探测器散射仅能带来边际对比度增强,且分辨率恢复可忽略不计,代价是灵敏度降低和统计噪声增加。由于探测器散射具有关于放射性的正确信息,但关于源位置的信息略有错误,我们建议应恢复该分量以保持灵敏度并提高分辨率。
提出一种连续去除物体散射并恢复探测器散射的散射校正模型。使用非平稳散射核在空间域中处理散射分量。探测器散射恢复核通过在傅里叶空间中分段反演获得。该模型通过线源和热点体模测量进行了测试。
物体散射减法显著提高了对比度,对分辨率无影响。探测器散射恢复几乎完全恢复了分辨率,小病变中的对比度有适度增强。对于≥3×半高宽的热点,溢出效应降低到5%以下,代价是适度的噪声放大。
虽然减去物体散射对于增强对比度和定量准确性是必要的,但恢复探测器散射可保持灵敏度,并通过减少高分辨率PET中的溢出效应来提高定量准确性。