Bolmsjö M S, Persson B R, Strand S E
Phys Med Biol. 1977 Mar;22(2):266-77. doi: 10.1088/0031-9155/22/2/006.
Image quality, resolution and sensitivity of a scintillation camera equipped with various collimators have been investigated using high purity 123I. Pulse height distributions of 123I from a thyroid phantom partly in air and partly immersed in water demonstrate the substantial septa penetration of the 440 and 529 keV gamma rays of 123I with high resolution collimators. Line spread functions recorded first with the line source in air and then in water show that the area under the 'wings' is attributed mainly to septa penetration but with a marked contribution from scattering in water. The modulation transfer function evaluated from the line spread functions shows a sudden drop at low frequencies for high resolution collimators due to their high degree of septa penetration. The two concepts of 'figure of merit' also used are Qb=Sa [MTF]2, where Sa is the plane sensitivity and Qc=S2/(S+2B), where S is the true signal from the object and B is the total background or noise due to septa penetration and scatter. The image reproduction per unit time which is described by Qb is best for a high resolution converging collimator. The statistical accuracy per unit time which is used in dynamic studies is described by Qc and is best for a medium energy collimator.
利用高纯度的123I对配备各种准直器的闪烁相机的图像质量、分辨率和灵敏度进行了研究。来自部分位于空气中、部分浸入水中的甲状腺模型的123I的脉冲高度分布表明,使用高分辨率准直器时,123I的440 keV和529 keVγ射线存在明显的隔板穿透现象。首先在空气中、然后在水中对线源记录的线扩展函数表明,“边缘”下的面积主要归因于隔板穿透,但水中散射也有显著贡献。从线扩展函数评估得到的调制传递函数显示,由于高分辨率准直器的隔板穿透程度较高,在低频处会突然下降。还使用了两个“品质因数”的概念,即Qb = Sa [MTF]2,其中Sa是平面灵敏度,以及Qc = S2/(S + 2B),其中S是来自物体的真实信号,B是由于隔板穿透和散射产生的总背景或噪声。由Qb描述的单位时间内的图像再现对于高分辨率汇聚准直器是最佳的。动态研究中使用的单位时间内的统计精度由Qc描述,对于中能准直器是最佳的。