Faculty of Engineering, University of Kragujevac, Sestre Janjić 6, Kragujevac 34000, Serbia; Bioengineering Research and Development Centre (BioIRC), Prvoslava Stojanovića 6, Kragujevac 34000, Serbia.
Center for Neurosurgery, Clinical Centre Kragujevac, Zmaj Jovina 30, Kragujevac 34000, Serbia; Faculty of Medical Sciences, Department of Surgery, University of Kragujevac, Svetozara Markovića 69, Kragujevac 34000, Serbia.
Med Eng Phys. 2024 Aug;130:104215. doi: 10.1016/j.medengphy.2024.104215. Epub 2024 Aug 2.
Cranioplasty is the surgical repair of a bone defect in the skull resulting from a previous operation or injury, which involves lifting the scalp and restoring the contour of the skull with a graft made from material that is reconstructed from scans of the patient's own skull. The paper introduces a 3D printing technology in creating molds, which are filled with polymethyl methacrylate (PMMA) to reconstruct the missing bone part of the skull. The procedure included several steps to create a 3D model in an STL format, conversion into a G-code which is further used to produce the mold itself using a 3D printer. The paper presents our initial experience with 5 patients who undergone cranioplasty utilizing 3D printed molds. Making a patient-specific model is a very complex process and consists of several steps. The creation of a patient-specific 3D model loading of DICOM images obtained by CT scanning, followed by thresholding-based segmentation and generation of a precise 3D model of part of the patient's skull. Next step is creating the G-code models for 3D printing, after which the actual models are printed using Fused Deposition Modeling printer and PLA material. All surgeries showed good match of the missing bone part and part created using 3D printed mold, without additional steps in refinement. In such a way, 3D printing technology helps in creating personalized and visually appealing bone replacements, at a low cost of the final product.
颅骨修复术是对因先前手术或损伤导致颅骨出现骨缺损的一种外科修复方法,该手术包括掀起头皮并用取自患者自身颅骨扫描重建的材料制成的移植物来恢复颅骨轮廓。本文介绍了一种在创建模具中使用 3D 打印技术的方法,该模具中填充有聚甲基丙烯酸甲酯(PMMA),以重建颅骨缺失的部分。该过程包括几个步骤,首先创建 STL 格式的 3D 模型,然后转换为 G 代码,进一步使用 3D 打印机生产模具本身。本文介绍了我们对 5 名接受 3D 打印模具颅骨修复术的患者的初步经验。制作患者特定的模型是一个非常复杂的过程,包括几个步骤。首先创建患者特定的 3D 模型,加载通过 CT 扫描获得的 DICOM 图像,然后进行基于阈值的分割,并生成患者颅骨部分的精确 3D 模型。下一步是为 3D 打印创建 G 代码模型,之后使用熔丝制造(Fused Deposition Modeling)打印机和 PLA 材料打印实际模型。所有手术均显示出缺失骨部分与使用 3D 打印模具创建的部分之间的良好匹配,无需进行额外的细化步骤。通过这种方式,3D 打印技术有助于以较低的最终产品成本创建个性化且具有视觉吸引力的骨替代品。