首页> 美国卫生研究院文献>Journal of Clinical Medicine >3D Printing of Rapid Low-Cost and Patient-Specific Models of Brain Vasculature for Use in Preoperative Planning in Clipping of Intracranial Aneurysms
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3D Printing of Rapid Low-Cost and Patient-Specific Models of Brain Vasculature for Use in Preoperative Planning in Clipping of Intracranial Aneurysms

机译:3D打印颅内动脉夹狭窄规划术前规划中的快速低成本和患者特异性模型的脑血管系统

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摘要

We developed a practical and cost-effective method of production of a 3D-printed model of the arterial Circle of Willis of patients treated because of an intracranial aneurysm. We present and explain the steps necessary to produce a 3D model from medical image data, and express the significant value such models have in patient-specific pre-operative planning as well as education. A Digital Imaging and Communications in Medicine (DICOM) viewer is used to create 3D visualization from a patient’s Computed Tomography Angiography (CTA) images. After generating the reconstruction, we manually remove the anatomical components that we wish to exclude from the print by utilizing tools provided with the imaging software. We then export this 3D reconstructions file into a Standard Triangulation Language (STL) file which is then run through a “Slicer” software to generate a G-code file for the printer. After the print is complete, the supports created during the printing process are removed manually. The 3D-printed models we created were of good accuracy and scale. The median production time used for the models described in this manuscript was 4.4 h (range: 3.9–4.5 h). Models were evaluated by neurosurgical teams at local hospital for quality and practicality for use in urgent and non-urgent care. We hope we have provided readers adequate insight into the equipment and software they would require to quickly produce their own accurate and cost-effective 3D models from CT angiography images. It has become quite clear to us that the cost-benefit ratio in the production of such a simplified model is worthwhile.
机译:我们开发了一种实用且经济高效的方法,生产了由于颅内动脉瘤治疗的患者威利斯动脉圈的3D印刷模型。我们展示并解释了从医学图像数据生成3D模型所需的步骤,并表达在特定于患者特定的术前计划以及教育中的显着价值。医学中的数字成像和通信(DICOM)查看器用于从患者的计算机断层造影血管造影(CTA)图像中创建3D可视化。生成重建后,我们手动删除我们希望通过利用具有成像软件提供的工具来排除打印的解剖组件。然后,我们将此3D重建文件导出到标准三角测量语言(STL)文件中,然后通过“Slicer”软件运行,以为打印机生成G代码文件。打印完成后,手动删除打印过程中创建的支持。我们创建的3D印刷模型具有良好的准确性和规模。用于本手稿中描述的模型的中位生产时间为4.4小时(范围:3.9-4.5小时)。模型由当地医院的神经外科小组评估,以获得迫切和不紧急护理的质量和实用性。我们希望我们为读者提供了足够的洞察力,他们需要从CT血管造影图像快速生产自己的准确和经济高效的3D模型。我们已经很清楚了解这种简化模型的生产中的成本效益比值是值得的。

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