Department of Neurology, Harbor-UCLA Medical Center, Torrance, California 90509, USA.
Hum Brain Mapp. 1997;5(5):379-88. doi: 10.1002/(SICI)1097-0193(1997)5:5<379::AID-HBM6>3.0.CO;2-0.
An improved method for correction of partial volume effects (PVE) in brain SPECT is proposed. It is fully three-dimensional, does not require particular patient positioning, and works with scans only partially covering the brain. The location of functionally inactive brain regions (primarily cerebrospinal fluid) is extracted from high-resolution MRI. An automatic 3D registration algorithm then determines the geometric transformation between MRI and SPECT. Correction consists of: 1) counting the volumetric active/inactive ratio in each volume element of the functional scan using the measured SPECT point spread function; 2) correcting the functional measures according to these ratios; 3) fusing functional and anatomical information at the resolution of MRI. Quantitative validation was performed using a phantom containing a test region in which multiple parallel acrylic plates thinner than SPECT resolution created high PVE, as well as a large reference region not suffering from PVE. Reference activity was recovered in the test region with an accuracy of 1-3%. The method was applied to clinical images demonstrating a combination of hypoperfusion and cortical atrophy. The composite anatomical-functional corrected images, in which the main sulci are visible, yield better differentiation between decreased function and focal atrophy.
提出了一种改进的脑 SPECT 部分容积效应(PVE)校正方法。它是完全三维的,不需要特定的患者定位,并且仅对部分覆盖大脑的扫描有效。从高分辨率 MRI 中提取功能无活性脑区(主要是脑脊液)的位置。然后,自动 3D 配准算法确定 MRI 和 SPECT 之间的几何变换。校正包括:1)使用测量的 SPECT 点扩散函数计算功能扫描每个体素的容积活性/无活性比;2)根据这些比校正功能测量值;3)以 MRI 的分辨率融合功能和解剖信息。使用包含测试区域的体模进行定量验证,其中多个平行的亚克力板比 SPECT 分辨率薄,造成高 PVE,以及不受 PVE 影响的大参考区域。测试区域中的参考活性恢复精度为 1-3%。该方法应用于临床图像,显示了灌注不足和皮质萎缩的组合。复合解剖-功能校正图像中,主要脑沟可见,可更好地区分功能下降和局灶性萎缩。