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Implementation of Histogram Based Soft-tissue Segmentation for Single Spiral Transmission Scanning in Whole Body PET

机译:基于直方图的软组织分割技术在全身PET单螺旋透射扫描中的实现

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3D continuous emission and spiral transmission (CEST) scanning provides a high-throughput whole-body PET study using two dedicated detectors for 3D emission and single transmission with continuous bed movement. Since post-injection single transmission data contains emission contamination (EC) and transmission scatter components (TSC), the transmission detector was designed to have a short axial extent with a highly collimated 137Cs point source, and be implemented using a realtime EC correction method. However, transmission images can be still affected by residual EC and TSC, depending on patient size and dose injected. This results in slight variations in attenuation coefficients, depending on the patient''s axial position. In this study, we developed a new soft-tissue segmentation (STS) method based on histogram scaling at each axial position of the spiral transmission. Peaks, corresponding to soft-tissue in a histogram of attenuation coefficients, were found at each axial position and the transmission image was scaled using the ratio of soft-tissue histogram peaks to the theoretical water attenuation coefficient. In scaled transmission images, the pixel values near the soft-tissue peak were replaced with the theoretical water attenuation coefficient. Quantitative evaluation was performed of the transmission images obtained under various acquisition conditions, both with and without the proposed STS method. Regarding final imaging performance, emission images reconstructed using both STS attenuation correction and hybrid scatter correction were evaluated. Results showed that the proposed STS method for spiral transmission scanning provided quantitative images independent of object size and containing activity concentration.
机译:3D连续发射和螺旋传输(CEST)扫描提供了高通量的全身PET研究,使用两个专用的3D发射检测器和连续床移动的单次传输检测器。由于注入后的单次透射数据包含发射污染(EC)和透射散射成分(TSC),因此透射检测器的轴向范围较短,具有高度准直的 137 Cs点源,并且可以使用实时EC校正方法实施。但是,取决于患者的体型和注射的剂量,残留EC和TSC仍会影响透射图像。这导致衰减系数略有变化,具体取决于患者的轴向位置。在这项研究中,我们开发了一种新的软组织分割(STS)方法,该方法基于直方图在螺旋传输的每个轴向位置上的缩放比例。在每个轴向位置上找到与衰减系数直方图中的软组织相对应的峰值,并使用软组织直方图峰值与理论水衰减系数的比率来缩放透射图像。在按比例缩放的透射图像中,将软组织峰附近的像素值替换为理论水衰减系数。对使用和不使用建议的STS方法在各种采集条件下获得的透射图像进行了定量评估。关于最终成像性能,评估了使用STS衰减校正和混合散射校正重建的发射图像。结果表明,所提出的用于螺旋透射扫描的STS方法提供了与物体大小无关且包含活性浓度的定量图像。

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