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Accuracy of individualized 3D modeling of ossicles using high-resolution computed tomography imaging data

机译:使用高分辨率计算断层扫描成像数据的个性化3D建模的准确性

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Background: The present study aimed to investigate the visibility of small ossicle parts/landmarks on high-resolution computed tomography (HRCT)/3D reconstruction (3D) to investigate what improvements in scanning resolution are needed before accurate 3D printing of patient-specific ossicles is possible. Methods: A total of 24 patients with sudden deafness sought consultation at the Department of Otorhinolaryngology Head and Neck Surgery at the Sixth Medical Center of People’s Liberation Army General Hospital between October 2013 and June 2014 were enrolled in the study. All participants underwent a 256-slice spiral HRCT temporal bone axial scan, yielding a Digital Imaging and Communications in Medicine documents series. These documents were then inputted into Mimics 16.0 interactive medical image processing software for data conversion and the creation of 3D segmentation and visualizations of the ossicles. Finally, the 3D images were compared using multiplanar reformation (MPR) and 3D volume-rendering (VR) reconstructed images of ossicles to verify their consistency. These were then compared with the normal ossicle structure to evaluate the accuracy of the restoration. Results: The findings indicated that the morphology of the ossicles from the converted Mimics 16.0 data achieved a display rate of ≥90% when used to display 7 landmarks (the caput mallei, collum mallei, processus lateralis mallei, manubrium mallei, corpus incudis, crus longum incudis, and crus breve incudis). This demonstrates excellent matching with the images of ossicles obtained from MPR and 3D VR reconstruction. Kappa consistency testing found that the κ-value was higher than 0.75. When displaying the lenticular process, caput stapedis, crus anterius stapedis, and crus posterius stapedis landmarks. The display rate was around 60%, which shows good matching with the ossicles’ images obtained from MPR and 3D VR reconstruction, with a κ-value 0.4. However, the display rate of the stapes footplate was only 25%, showing greater differences with the images obtained from MPR (76.4%) and 3D VR reconstruction (52.8%), with a κ-value 0.4. Conclusions: The accuracy of the visualization of the malleus and incus after restoration via Mimics 16.0 software, based on temporal bone HRCT data, was high, and the degree of restoration was good. However, the accuracy and degree of restoration of the stapes footplate require further improvement.
机译:背景:本研究旨在调查小型纺织品零件/地标在高分辨率计算断层扫描(HRCT)/ 3D重建(3D)上的可见性,以调查在精确的3D打印患者特定骨粒子的3D打印之前需要什么改进扫描分辨率可能的。方法:2013年10月至2014年10月之间的第六次医疗中心,共有24例突然耳聋突然突然突然突然讨论。所有参与者都接受了256级螺旋HRCT颞骨轴扫描,在医学文件系列中产生数字成像和通信。然后将这些文档输入到模仿16.0交互式医学图像处理软件中,以进行数据转换和创建串联的3D分段和可视化。最后,使用多平坦的重构(MPR)和3D音量渲染(VR)重建骨收集的图像来进行比较3D图像以验证它们的一致性。然后将这些与正常的纺织品结构进行比较以评估恢复的准确性。结果表明,当展示7个地标时,从转换模仿的模仿的骨箱的形态实现了≥90%的显示率(Caput Mallei,Procedus Mallei,Manubrium Mallei,Corpus inducis,Crus Longum Incudis和Crus Breve Incudis)。这证明了与从MPR和3D VR重建获得的骨收浆量的图像出色的匹配。 Kappa一致性测试发现κ值高于0.75。在显示透镜过程时,Caput Stapedis,Crus Anterius Stapedis和Crus Postius Stapedis地标。显示速率约为60%,显示出与从MPR和3D VR重建获得的骨收获的图像匹配,具有κ值& 0.4。然而,镫骨踏板的显示速率仅为25%,显示出与从MPR(76.4%)和3D VR重建(52.8%)获得的图像的更大差异,具有κ值<0.4。结论:通过模仿术通过模拟物软件,基于颞骨HRCT数据的恢复后,Malleus和Incus的可视化的准确性高,恢复程度良好。然而,镫骨脚板的准确性和恢复程度需要进一步改善。

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