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Effects of detector sensitivity on image quality in multidetector SPECT

机译:多探测器SPECT中探测器灵敏度对图像质量的影响

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The common imaging practice of each detector acquiring projection data over a limited angle on multidetector systems introduces the possibility of imbalances in system response causing artifacts and changes in image quality. Here we evaluate the effect of variations in detector sensitivity caused by differences in the photopeak window position, width, and different collimators on reconstructed image quality. Analytical simulations of cardiac phantom geometries and experimental measurements with Data Spectrum's Cardiac and Deluxe SPECT phantoms on a 3 gamma camera SPECT system were used in the evaluation. The relative efficiency of one of three detectors was changed over a series of values between 100 and 0%, while the efficiency of the remaining two detectors was maintained at 100%. The results show decreased activity occurs in two 600 wide regions adjacent the path covered by the detector with the lower counting efficiency. The relative count ratios in the regions with decreased activity change over the range of 1.0 to 0.59 as the detector sensitivity is varied from 100 to 0% of the full energy window. The results show that variations in detector sensitivity can degrade spatial resolution and uniformity and create artifacts in reconstructed tomographic slices.
机译:在多探测器系统上,每个探测器在有限角度上获取投影数据的常规成像实践引入了系统响应不平衡的可能性,从而导致伪像和图像质量的变化。在这里,我们评估了由于光电峰值窗口位置,宽度和不同的准直仪的差异而导致的检测器灵敏度变化对重构图像质量的影响。在评估中,使用了3D相机SPECT系统上的Data Spectrum的Cardiac和Deluxe SPECT体模对心脏模型的几何形状进行了分析模拟,并进行了实验测量。在100%和0%之间的一系列值上更改了三个检测器之一的相对效率,而其余两个检测器的效率则保持在100%。结果表明,在检测器覆盖的路径附近的两个600宽区域中,活性降低,计数效率降低。当探测器灵敏度从全能量窗口的100%变为0%时,活性降低的区域中的相对计数比将在1.0到0.59的范围内变化。结果表明,探测器灵敏度的变化会降低空间分辨率和均匀性,并在重建的断层摄影切片中产生伪像。

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