首页> 外文会议>Engineering in Medicine and Biology Society, 2000. Proceedings of the 22nd Annual International Conference of the IEEE >FDG-PET/CT integration: impact on tumour localization and dose volume histograms in radiation therapy
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FDG-PET/CT integration: impact on tumour localization and dose volume histograms in radiation therapy

机译:FDG-PET / CT整合:对放射治疗中的肿瘤定位和剂量体积直方图的影响

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Conventional radiotherapy for non-small cell lung cancer (NSCLC) is often unable to achieve local control. For this reason, 3DCRT with dose escalation is being investigated as a means of improving outcome. It is essential to accurately define the gross tumour volume (GTV) for 3DCRT to succeed. Unfortunately, anatomic imaging techniques such as CT or MRI are often unable to distinguish tumour from normal tissue. Functional imaging with /sup 18/F-FDG PET has the potential to define the GTV more accurately. A prospective study of the use of FDG-hybrid-PET images fused to CT simulation images in radiotherapy treatment planning for NSCLC is described. In a significant fraction of cases, the addition of functional information produces dramatic changes both in the GTV and in dose volume histograms for normal tissues.
机译:非小细胞肺癌(NSCLC)的常规放射疗法通常无法实现局部控制。因此,正在研究随着剂量增加的3DCRT作为改善预后的一种方法。准确定义3DCRT成功的总肿瘤体积(GTV)至关重要。不幸的是,诸如CT或MRI的解剖成像技术通常不能将肿瘤与正常组织区分开。使用/ sup 18 / F-FDG PET进行的功能成像有可能更准确地定义GTV。前瞻性研究了融合了CT模拟图像的FDG混合PET图像在NSCLC放射治疗计划中的应用。在极少数情况下,功能信息的添加会在GTV和正常组织的剂量体积直方图中产生巨大变化。

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