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Accuracy of CT-Based Attenuation Correction in PET/CT Bone Imaging

机译:在pET / CT骨显像基于CT衰减校正的精度

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摘要

We evaluate the accuracy of scaling CT images for attenuation correction of PET data measured for bone. While the standard tri-linear approach has been well-tested for soft tissues, the impact of CT-based attenuation correction on the accuracy of tracer uptake in bone has not been reported in detail.We measured the accuracy of attenuation coefficients of bovine femur segments and patient data using a tri-linear method applied to CT images obtained at different kVp settings. Attenuation values at 511 keV obtained with a 68Ga/68Ge transmission scan were used as a reference standard. The impact of inaccurate attenuation images on PET standardized uptake values (SUVs) was then evaluated using simulated emission images and emission images from five patients with elevated levels of FDG uptake in bone at disease sites.The CT-based linear attenuation images of the bovine femur segments underestimated the true values by 2.9±0.3% for cancellous bone regardless of kVp. For compact bone the underestimation ranged from 1.3% at 140 kVp to 14.1% at 80 kVp. In the patient scans at 140 kVp the underestimation was approximately 2% averaged over all bony regions. The sensitivity analysis indicated that errors in PET SUVs in bone are approximately proportional to errors in the estimated attenuation coefficients for the same regions. The variability in SUV bias also increased approximately linearly with the error in linear attenuation coefficients.These results suggest that bias in bone uptake SUVs of PET tracers range from 2.4% to 5.9% when using CT scans at 140 and 120 kVp for attenuation correction. Lower kVp scans have the potential for considerably more error in dense bone. This bias is present in any PET tracer with bone uptake but may be clinically insignificant for many imaging tasks. However, errors from CT-based attenuation correction methods should be carefully evaluated if quantitation of tracer uptake in bone is important.
机译:我们评估缩放CT图像的准确性,以便测量骨骼的PET数据的衰减校正。虽然标准的三线性方法已经过度测试了软组织,但尚未详细报道基于CT基衰减校正对骨骨中的示踪剂摄取的准确性的影响。我们测量了牛股骨段的衰减系数的准确性使用三线性方法应用于不同KVP设置的CT图像的患者数据。使用 68 Ga / 68 Ge传输扫描获得的511keV处的衰减值用作参考标准。然后使用来自疾病位点骨骨水平升高的5例患者的模拟发射图像和发射图像进行评估对宠物标准化摄取值(SUV)的影响。基于CT的骨骼的CT基线性衰减图像的牛股骨无论KVP如何,细分都低估了真实值2.9±0.3%。对于紧凑的骨骼,低估为140 kVp的1.3%,在80 kVp下为14.1%。在患者中,在140 kVP下扫描,低估约为所有骨区平均约2%。灵敏度分析表明,骨中PET SUV的误差与相同区域的估计衰减系数中的误差大致成比例。 SUV偏置的可变性也随着线性衰减系数的误差大致线性增加。这些结果表明,当在140和120 kVP时使用CT扫描时,PET示踪剂的骨摄取SUV的偏差范围为2.4%至5.9%以进行衰减校正。较低的KVP扫描具有相当多的骨骼误差的潜力。这种偏差在任何具有骨骼摄取的宠物示踪剂中存在,但对于许多成像任务可能是临床上微不足道的。然而,如果骨骼中示踪剂摄取的定量是重要的,则应仔细评估基于CT的衰减校正方法的错误。

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