首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Impacts of Thresholds of Gray Value for Cone-Beam Computed Tomography 3D Reconstruction on the Accuracy of Image Matching with Optical Scan
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Impacts of Thresholds of Gray Value for Cone-Beam Computed Tomography 3D Reconstruction on the Accuracy of Image Matching with Optical Scan

机译:锥形光束计算机断层扫描三维重构灰色值阈值对光学扫描的图像匹配精度的影响

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摘要

In cone-beam computed tomography (CBCT), the minimum threshold of the gray value of segmentation is set to convert the CBCT images to the 3D mesh reconstruction model. This study aimed to assess the accuracy of image registration of optical scans to 3D CBCT reconstructions created by different thresholds of grey values of segmentation in partial edentulous jaw conditions. CBCT of a dentate jaw was reconstructed to 3D mesh models using three different thresholds of gray value (−500, 500, and 1500), and three partially edentulous models with different numbers of remaining teeth (4, 8, and 12) were made from each 3D reconstruction model. To merge CBCT and optical scan data, optical scan images were registered to respective 3D reconstruction CBCT images using a point-based best-fit algorithm. The accuracy of image registration was assessed by measuring the positional deviation between the matched 3D images. The Kruskal–Wallis test and a post hoc Mann–Whitney U test with Bonferroni correction were used to compare the results between groups (α = 0.05). The correlations between the experimental factors were calculated using the two-way analysis of variance test. The positional deviations were lowest with the threshold of 500, followed by the threshold of 1500, and then −500. A significant interaction was found between the threshold of gray values and the number of remaining teeth on the registration accuracy. The most significant deviation was observed in the arch model with four teeth reconstructed with a gray-value threshold of −500. The threshold for the gray value of CBCT segmentation affects the accuracy of image registration of optical scans to the 3D reconstruction model of CBCT. The appropriate gray value that can visualize the anatomical structure should be set, especially when few teeth remain in the dental arch.
机译:在锥形光束计算机断层扫描(CBCT)中,将分割灰度值的最小阈值设置为将CBCT图像转换为3D网格重建模型。本研究旨在评估光学扫描图像登记的准确性,通过局部透明下颌条件的分割的不同阈值产生的三维CBCT重建。使用三个不同的灰度阈值(-500,500和1500)重建牙齿钳口的CBCT到3D网状模型,以及三个具有不同数量的牙齿(4,8和12)的部分透明模型每个3D重建模型。为了合并CBCT和光学扫描数据,使用基于点的最佳算法将光学扫描图像注册到相应的3D重建CBCT图像。通过测量匹配的3D图像之间的位置偏差来评估图像配准的准确性。 Kruskal-Wallis测试和HOC HOC MANN-WHITNEY U测试与BONFERRONI校正进行了比较组之间的结果(α= 0.05)。使用差异试验的双向分析计算实验因子之间的相关性。位置偏差与500的阈值最低,接着是1500的阈值,然后是-500。在灰度值的阈值和登记精度上的剩余齿数之间发现了显着的相互作用。在拱形模型中观察到最重要的偏差,其中四颗牙齿以-500的灰度阈值重建。 CBCT分割的灰度值的阈值影响光学扫描的图像登记到CBCT的3D重建模型的准确性。应设定可视化解剖结构的适当灰度值,尤其是当少量牙齿留在牙弓时。

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