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Phantom study and preliminary clinical evaluation of position-dependent Compton-scatter correction system

机译:依赖位置的康普顿散射校正系统的幻像研究和初步临床评估

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To achieve quantitative SPECT (single photon emission computed tomography) measurement, it is important that the Comptom-scatter and absorption correction technique handles SPECT values as primary activity over a large variety of geometries. The authors chose a liver study and expected a sufficient photon count in the SPECT scan because liver uptake of Tc-99m-labeled pharmaceuticals is high. However, the scatter and absorption volume was so large and so many scattered photons were contained in the projection data that, until now, quantitative SPECT measurements could not be done using only attenuation correction. In the present work, the practical application of the scatter compensation method modified from Ogawa's method for clinical use was investigated. For reconstruction and attenuation correction, the authors used Inoue's method and modified the table thickness parameters to make the attenuation coefficient of the tabletop equal to that of the human body. The results obtained indicate that image quality and quantity are improved by the compensation procedure. The proposed scatter compensation method can be applied to routine liver SPECT studies.
机译:为了实现定量SPECT(单光子发射计算机断层扫描)测量,重要的是,计算机散射和吸收校正技术将SPECT值作为在各种几何形状上的主要活动来处理。作者选择了一项肝脏研究,并期望在SPECT扫描中有足够的光子计数,因为Tc-99m标记的药物对肝脏的摄取很高。但是,散射和吸收量非常大,投影数据中包含许多散射光子,因此到目前为止,仅靠衰减校正还不能完成定量SPECT测量。在目前的工作中,研究了由小川法改进的散射补偿法在临床上的实际应用。为了进行重建和衰减校正,作者使用了Inoue方法并修改了桌面厚度参数,以使桌面的衰减系数等于人体的衰减系数。获得的结果表明,通过补偿程序可以改善图像质量和数量。所提出的散射补偿方法可以应用于常规肝脏SPECT研究。

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