Huger S, Graff P, Harter V, Marchesi V, Royer P, Diaz J C, Aouadi S, Wolf D, Peiffert D, Noel A
Université de Lorraine, CRAN, UMR 7039, 2, Avenue de la forêt de Haye, Vandoeuvre-Les-Nancy Cedex 54506, France; CNRS, CRAN, UMR 7039, France; Institut de Cancérologie de Lorraine Alexis Vautrin, CLCC, Avenue de Bourgogne, Vandoeuvre-Les-Nancy Cedex 54511, France.
Institut de Cancérologie de Lorraine Alexis Vautrin, CLCC, Avenue de Bourgogne, Vandoeuvre-Les-Nancy Cedex 54511, France.
Phys Med. 2014 May;30(3):301-8. doi: 10.1016/j.ejmp.2013.09.001. Epub 2013 Oct 3.
To compare the accuracy of the Block Matching deformable registration (DIR) against rigid image registration (RIR) for head-and-neck multi-modal images CT to cone-beam CT (CBCT) registration.
Planning-CT and weekly CBCT of 10 patients were used for this study. Several volumes, including medullary canal (MC), thyroid cartilage (TC), hyoid bone (HB) and submandibular gland (SMG) were transposed from CT to CBCT images using either DIR or RIR. Transposed volumes were compared with the manual delineation of these volumes on every CBCT. The parameters of similarity used for analysis were: Dice Similarity Index (DSI), 95%-Hausdorff Distance (95%-HD) and difference of volumes (cc).
With DIR, the major mean difference of volumes was -1.4 cc for MC, revealing limited under-segmentation. DIR limited variability of DSI and 95%-HD. It significantly improved DSI for TC and HB and 95%-HD for all structures but SMG. With DIR, mean 95%-HD (mm) was 3.01 ± 0.80, 5.33 ± 2.51, 4.99 ± 1.69, 3.07 ± 1.31 for MC, TC, HB and SMG, respectively. With RIR, it was 3.92 ± 1.86, 6.94 ± 3.98, 6.44 ± 3.37 and 3.41 ± 2.25, respectively.
Block Matching is a valid algorithm for deformable multi-modal CT to CBCT registration. Values of 95%-HD are useful for ongoing development of its application to the cumulative dose calculation.
比较块匹配可变形配准(DIR)与刚性图像配准(RIR)对头颈部多模态图像(CT到锥形束CT(CBCT)配准)的准确性。
本研究使用了10例患者的计划CT和每周的CBCT。使用DIR或RIR将包括髓腔(MC)、甲状软骨(TC)、舌骨(HB)和下颌下腺(SMG)在内的几个体积从CT转移到CBCT图像上。将转移后的体积与每个CBCT上这些体积的手动勾勒进行比较。用于分析的相似性参数为:骰子相似性指数(DSI)、95% - 豪斯多夫距离(95% - HD)和体积差(cc)。
使用DIR时,MC的主要平均体积差为 - 1.4 cc,显示分割不足有限。DIR限制了DSI和95% - HD的变异性。它显著提高了TC和HB的DSI以及除SMG外所有结构的95% - HD。使用DIR时,MC、TC、HB和SMG的平均95% - HD(mm)分别为3.01 ± 0.80、5.33 ± 2.51、4.99 ± 1.69、3.07 ± 1.31。使用RIR时,分别为3.92 ± 1.86、6.94 ± 3.98、6.44 ± 3.37和3.41 ± 2.25。
块匹配是一种用于可变形多模态CT到CBCT配准的有效算法。95% - HD值对于其在累积剂量计算中的应用的持续开发很有用。