Manglos S H, Bassano D A, Thomas F D
Department of Radiology, SUNY Health Science Center, Syracuse 13210.
J Nucl Med. 1991 Sep;32(9):1813-20.
This paper develops and tests cone-beam transmission computed tomography (CB-CT) for attenuation compensation of SPECT images. CB-CT was implemented on a rotating gamma camera with a point source (1-2 mCi) of 99mTc, and a light-weight aluminum source holder. A cone-beam collimator may be used but is not required. Since the point source is either located at the collimator focal point, or the camera is uncollimated, CB-CT has excellent sensitivity (at least 150 times that of a parallel-hole, high-resolution collimator). The predicted resolution is equal to the intrinsic gamma camera resolution (3-4 mm), which is much higher than for a high-resolution, parallel-hole collimator (10-20 mm). In the present study, CB-CT provided low noise, high-resolution attenuation maps for use in a nonuniform attenuation-weighted backprojection algorithm. The attenuation compensation accuracy was tested using basic geometries of line sources and nonuniform density models. For the appropriate scaling of the attenuation map, the attenuation compensation was accurate and removed the SPECT image distortion associated with nonuniform attenuation. Attenuation maps acquired either with cone beam collimator or without any collimator were both successful. Using CB-CT, SPECT can thus be made much more accurate without adding unduly to the imaging time, complexity, or cost.
本文开发并测试了用于单光子发射计算机断层扫描(SPECT)图像衰减补偿的锥束透射计算机断层扫描(CB - CT)。CB - CT是在配备99mTc点源(1 - 2毫居里)和轻质铝源支架的旋转伽马相机上实现的。可以使用锥束准直器,但并非必需。由于点源要么位于准直器焦点处,要么相机未使用准直器,CB - CT具有出色的灵敏度(至少是平行孔高分辨率准直器的150倍)。预测分辨率等于伽马相机的固有分辨率(3 - 4毫米),这比高分辨率平行孔准直器的分辨率(10 - 20毫米)高得多。在本研究中,CB - CT提供了低噪声、高分辨率的衰减图,用于非均匀衰减加权反投影算法。使用线源和非均匀密度模型的基本几何形状测试了衰减补偿精度。对于衰减图的适当缩放,衰减补偿是准确的,并消除了与非均匀衰减相关的SPECT图像失真。使用锥束准直器或不使用任何准直器获取的衰减图均获得成功。因此,使用CB - CT可以在不过度增加成像时间、复杂性或成本的情况下,使SPECT更加准确。