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Hot sphere detection limits for a dual head coincidence imaging system

机译:双头重合成像系统的热球检测极限

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摘要

Phantom studies were performed to investigate detectability limits for a dual head coincidence imaging system. Spheres of 2.8, 2.2, 1.6, 1.2, 1.0, 0.8 cm inner diameter were placed at a radius of 5.75 cm in a 22 cm diameter cylindrical phantom. The contrast to noise ratio (CNR) of the spheres to background was used as the authors' metric of detectability. CNR values were determined for three different sphere to background ratios (10:1, 5:1, and 3:1); for three different background count densities (high, medium, and low); and for three different energy window requirements (photopeak only, photopeak and photopeak-Compton, and all combinations). Based upon the authors' visual observation, the smallest detectable spheres were 0.8 cm, 1.2 cm and 1.6 cm for a 2.5 million event photopeak-Compton image set with sphere to background ratios of 10:1, 5:1 and 3:1, respectively. The CNR values for these spheres were 5.1, 7.8, and 4.8. Over all observations, spheres with a CNR greater than 4 were detectable.
机译:进行了幻影研究,以研究双头重合成像系统的可检测性极限。将内径为2.8、2.2、1.6、1.2、1.0、0.8厘米的球放在直径为22厘米的圆柱体模型中的半径为5.75厘米的位置。球与背景的对比噪声比(CNR)被用作作者的可检测性度量。确定了三种不同的球与背景比率(10:1、5:1和3:1)的CNR值;对于三种不同的背景计数密度(高,中和低);以及三种不同的能量窗口要求(仅适用于光峰值,光峰值和光峰值-康普顿,以及所有组合)。根据作者的视觉观察,对于250万个事件峰-康普顿图像集,球与背景的比率分别为10:1、5:1和3:1,最小的可检测球体分别为0.8 cm,1.2 cm和1.6 cm。 。这些球体的CNR值为5.1、7.8和4.8。在所有观察结果中,可检测到CNR大于4的球体。

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