张晓东, 粘忠柱, 林雯, 庄黎明. 3D打印鼻窦-颅底解剖模型的价值及意义[J]. 实用临床医药杂志, 2023, 27(6): 1-5. DOI: 10.7619/jcmp.20223141
引用本文: 张晓东, 粘忠柱, 林雯, 庄黎明. 3D打印鼻窦-颅底解剖模型的价值及意义[J]. 实用临床医药杂志, 2023, 27(6): 1-5. DOI: 10.7619/jcmp.20223141
ZHANG Xiaodong, NIAN Zhongzhu, LIN Wen, ZHUANG Liming. Value and significance of three-dimensional printed anatomical model of nasal sinuses and skull base[J]. Journal of Clinical Medicine in Practice, 2023, 27(6): 1-5. DOI: 10.7619/jcmp.20223141
Citation: ZHANG Xiaodong, NIAN Zhongzhu, LIN Wen, ZHUANG Liming. Value and significance of three-dimensional printed anatomical model of nasal sinuses and skull base[J]. Journal of Clinical Medicine in Practice, 2023, 27(6): 1-5. DOI: 10.7619/jcmp.20223141

3D打印鼻窦-颅底解剖模型的价值及意义

Value and significance of three-dimensional printed anatomical model of nasal sinuses and skull base

  • 摘要:
    目的 采用3D打印技术打印精细的鼻窦-颅底解剖模型, 并采用独特的翻页模式展示鼻窦内部空间细节结构。
    方法 将鼻窦CT数据导入Mimics软件, 构建鼻窦-颅底三维数字模型; 分别从冠状位、矢状位、水平位方向将模型切成数片, 导入3D打印机后, 打印为1:1比例的高仿真鼻窦-颅底切片模型。由5位职称为主治医师以上医师组成的小组对模型进行评价, 内容包括鼻窦-颅底解剖结构特征的模拟情况、精准性、优势和教育价值, 评价量表采用7点李克特量表。
    结果  本研究成功打印出逼真的鼻窦-颅底三维结构模型, 其内部空间细节可见。5位医师均认为3D打印的解剖结构轮廓与CT影像显示的轮廓相仿, 但能够提供更多的三维空间视觉信息, 并认为该模型在鼻窦-颅底解剖教学、复杂鼻窦-颅底手术中具有较高的应用价值。
    结论 3D打印的鼻窦结构模型具有三维视觉功能, 可为鼻窦解剖研究、住院医师培训、术前宣教、术前规划提供参考。

     

    Abstract:
    Objective To print a precision anatomical model of nasal sinuses and skull base by three-dimensional (3D) printing technology, and to show the detail structures of internal sinus space by unique page-turning mode.
    Methods The sinus CT data were imported into the Mimics software to construct a 3D digital model of nasal sinuses and skull base; the model was cut into several slices from the coronal, sagittal and horizontal directions, and these slices were imported into a 3D printer to print a 1 to 1 ratio high simulation slice model of nasal sinuses and skull base. A team of 5 doctors with professional titles above attending level was asked to evaluate the model, including the simulated situation, accuracy, advantages and educational value of the anatomical structural features of nasal sinuses and skull base, and the tool was 7-point Likert scale.
    Results A realistic three-dimensional structural model of nasal sinuses and skull base with visible internal spatial details was successfully printed in this study. Five attending physicians believed that the anatomical structure contour of the model was similar to the contour displayed on CT images, but 3D printed model was able to provide more three-dimensional spatial visual information, and they also believed that the model had a high application value in the anatomy teaching and complex surgery of nasal sinuses and skull base.
    Conclusion 3D printed structural model of nasal sinuses has three-dimensional visual function, which can provide reference for anatomical researches on nasal sinuses, resident training, preoperative education and preoperative planning.

     

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