A method for calibrating 3D PET without scatter correction

D. Bailey, T. Jones
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引用次数: 2

Abstract

Calibration for 3D PET using a uniform cylinder and cross-calibration with aliquots requires correction for scatter and attenuation. Thus the accuracy of the calibration is dependent on the scatter correction method, and on the applicability of the scatter correction for different regions of the body. A method has been developed which provides a calibration which does not require correction for scatter or attenuation, making it generally applicable and independent of the scatter correction. The method has been previously described for measurement of the absolute sensitivity of tomographic devices. This approach has been extended to give a calibration of the PET camera 'in air' in units of kBq/pixel. The reconstructed images are multiplied by this factor to give accurate activity concentrations, after attenuation and scatter correction. The method has been used with a fully 3D filtered-backprojection (reprojection) algorithm and iterative convolution-subtraction scatter correction on data from an ECAT 953B. Using this method 3D PET images have been calibrated to within 5% accuracy, but this is highly dependent on the accuracy of the scatter correction. The method described here is practical and provides a means of calibrating a 3D PET system without needing correction for scatter or attenuation of the calibration data.
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一种无需散射校正的三维PET标定方法
使用均匀圆柱体和等分交叉校准3D PET需要校正散射和衰减。因此,校准的精度取决于散射校正方法,以及散射校正对身体不同区域的适用性。已经开发了一种方法,该方法提供了一种不需要对散射或衰减进行校正的校准,使其普遍适用并且独立于散射校正。该方法已被先前描述为测量层析设备的绝对灵敏度。该方法已被扩展到以kBq/像素为单位对PET相机“在空中”进行校准。经过衰减和散射校正后,将重建图像乘以该因子以得到准确的活度浓度。该方法已用于全三维滤波-反投影(重投影)算法和迭代卷积-减去散射校正从ECAT 953B的数据。使用这种方法,3D PET图像的校准精度在5%以内,但这高度依赖于散射校正的精度。这里描述的方法是实用的,并且提供了一种校准3D PET系统而无需校正校准数据的散射或衰减的方法。
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