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PET/CT image registration: preliminary tests for its application to clinical dosimetry in radiotherapy.

机译:PET / CT图像配准:初步测试其在放射治疗中的临床剂量测定中的应用。

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The quality of dosimetry in radiotherapy treatment requires the accurate delimitation of the gross tumor volume. This can be achieved by complementing the anatomical detail provided by CT images through fusion with other imaging modalities that provide additional metabolic and physiological information. Therefore, use of multiple imaging modalities for radiotherapy treatment planning requires an accurate image registration method. This work describes tests carried out on a Discovery LS positron emission/computed tomography (PET/CT) system by General Electric Medical Systems (GEMS), for its later use to obtain images to delimit the target in radiotherapy treatment. Several phantoms have been used to verify image correlation, in combination with fiducial markers, which were used as a system of external landmarks. We analyzed the geometrical accuracy of two different fusion methods with the images obtained with these phantoms. We first studied the fusion method used by the PET/CT system by GEMS (hardware fusion) on the basis that there is satisfactory coincidence between the reconstruction centers in CT and PET systems; and secondly the fiducial fusion, a registration method, by means of least-squares fitting algorithm of a landmark points system. The study concluded with the verification of the centroid position of some phantom components in both imaging modalities. Centroids were estimated through a calculation similar to center-of-mass, weighted by the value of the CT number and the uptake intensity in PET. The mean deviations found for the hardware fusion method were: deltax/ +/-sigma = 3.3 mm +/- 1.0 mm and /deltax/ +/-sigma = 3.6 mm +/- 1.0 mm. These values were substantially improved upon applying fiducial fusion based on external landmark points: /deltax/ +/-sigma = 0.7 mm +/- 0.8 mm and /deltax/ +/-sigma = 0.3 mm 1.7 mm. We also noted that differences found for each of the fusion methods were similar for both the axial and helical CT image acquisition protocols.
机译:放射治疗中剂量学的质量要求精确划定肿瘤的总体积。这可以通过与其他提供额外代谢和生理信息的成像方式融合来补充CT图像提供的解剖学细节来实现。因此,将多种成像方式用于放射治疗计划需要精确的图像配准方法。这项工作描述了由通用电气医疗系统公司(GEMS)在Discovery LS正电子发射/计算机断层扫描(PET / CT)系统上进行的测试,供以后用于获取图像以界定放射治疗目标的测试。与基准标记结合使用了几种幻像来验证图像相关性,基准标记被用作外部界标系统。我们用这些体模获得的图像分析了两种不同融合方法的几何精度。我们首先基于GEMS(硬件融合)研究了PET / CT系统所使用的融合方法(硬件融合),这是因为CT和PET系统中的重建中心之间存在令人满意的一致性。其次是通过地标点系统的最小二乘拟合算法进行基准融合,即配准方法。该研究的结论是验证了两种成像方式中某些幻影组件的质心位置。通过类似于质心的计算来估计质心,并以CT值和PET的吸收强度加权。对于硬件融合方法发现的平均偏差为:deltax / + /-sigma = 3.3 mm +/- 1.0 mm和/ deltax / + /-sigma = 3.6 mm +/- 1.0 mm。当基于外部界标点应用基准融合时,这些值得到了显着改善:/ deltax / + /-sigma = 0.7 mm +/- 0.8 mm和/ deltax / +/- sigma = 0.3 mm 1.7 mm。我们还注意到,对于轴向和螺旋CT图像采集协议,每种融合方法的差异都相似。

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