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首页> 外文期刊>Cancer radiotherapie: journal de la Soci閠?fran鏰ise de radiotherapie oncologique >Scan acquisition parameter optimization for the treatment of moving tumors in radiotherapy
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Scan acquisition parameter optimization for the treatment of moving tumors in radiotherapy

机译:扫描采集参数优化用于放射治疗中移动性肿瘤的治疗

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AIM OF THE STUDY: In the case of lung tumor treatment, to adjust 3D helical computed tomography (CT) acquisition parameters using a dynamic phantom and compare to the theory the volumes of a moving object. MATERIALS AND METHODS: Three helical CT acquisitions were compared using a Big Bore CT scan : an initial parameters are chosen to obtain an axial slow scan like acquisition and a 4D CT scan. We used a phantom composed by a ball filled with water set on a dynamic platform moving in the antero-posterior or cranio-caudal direction with a 14 mm amplitude and a 4s period. For each acquisition and modality (static and dynamic), we quantified the ball volume by automatic contouring and we estimated relative errors. RESULTS: For an antero-posterior displacement, the volume of the moving ball is under estimated by 14.1 % with the "initial" scan, by 0.2 % with the "optimized" scan and over estimated by 0.8 % with the averaged 4D scan. For a cranio-caudal displacement, it is under estimated by about 22 % with the initial scan. CONCLUSION: Volume measurements performed with the dynamic phantom allowed us to validate the "optimized" 3D CT scan parameters because it accurately reflects the volume of a moving object. Radiotherapy departments without 4D CT should adapt scan parameters for internal target volume definition.
机译:研究目的:在肺肿瘤治疗的情况下,使用动态体模调整3D螺旋计算机断层扫描(CT)采集参数,并与理论上比较移动物体的体积。材料与方法:使用大口径CT扫描比较了三个螺旋CT采集:选择初始参数以获得轴向慢速扫描,如采集和4D CT扫描。我们使用了一个由装满水的球组成的幻影,该球放置在一个动态平台上,该平台在前后或颅尾方向上移动,振幅为14 mm,周期为4s。对于每个采集和模态(静态和动态),我们通过自动轮廓绘制来量化球的体积,并估计相对误差。结果:对于前后位移,“初始”扫描估计运动球的体积小于14.1%,“最佳”扫描估计运动的球体积小于0.2%,而平均4D扫描估计运动球的体积大于0.8%。对于颅尾位移,初始扫描估计为约22%。结论:使用动态体模进行的体积测量使我们能够验证“优化的” 3D CT扫描参数,因为它可以准确反映移动物体的体积。没有4D CT的放射治疗部门应调整扫描参数以定义内部目标体积。

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