Department of Radiotherapy, University Medical Center Utrecht, The Netherlands.
Radiother Oncol. 2013 Dec;109(3):394-7. doi: 10.1016/j.radonc.2013.10.004. Epub 2013 Oct 31.
The aim of this study is to assess the geometric accuracy of diffusion weighted (DW)-MRI by quantification of geometric distortions in the gross tumor volume (GTV) in head and neck (HN) cancer.
MATERIALS & METHODS: A retrospective analysis was performed on the data of 23 patients (with 24 lesions). For these patients, magnetic field maps and DW-MRI were acquired. The magnetic field maps were converted to voxel displacement maps. GTV delineations were transferred onto these voxel displacement maps and the voxel shifts in the GTV were analyzed.
The median shift was 3.2mm and the maximal posterior and anterior shifts were up to 15.0 and 26.0mm respectively. The range of shifts varied from 11.8 to 25.6mm. The percentage of GTV voxels that showed a shift of at least 6mm was found to be 23.2%.
Current DW-MRI images of HN tumors show severe distortions up to centimeters, which restrict the use of DW-MRI scans for GTV definition in RT treatment planning.
本研究旨在通过量化头颈部(HN)癌症大体肿瘤体积(GTV)中的几何变形来评估弥散加权(DW)-MRI 的几何准确性。
对 23 例患者(24 个病灶)的数据进行了回顾性分析。这些患者采集了磁场图和 DW-MRI。将磁场图转换为体素位移图。将 GTV 描绘转移到这些体素位移图上,并分析 GTV 中的体素位移。
中位数位移为 3.2mm,最大的后向和前向位移分别高达 15.0 和 26.0mm。位移范围从 11.8 到 25.6mm。至少有 6mm 位移的 GTV 体素百分比为 23.2%。
目前 HN 肿瘤的 DW-MRI 图像显示存在严重的变形,可达数厘米,这限制了 DW-MRI 扫描在 RT 治疗计划中用于 GTV 定义的应用。