Department of Neurosurgery, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430022, China.
Department of Gynaecological Oncology, Hubei Cancer Hospital, Wuhan, 430079, Hubei, China.
Sci Rep. 2021 Mar 5;11(1):5333. doi: 10.1038/s41598-021-84779-5.
The application of 3D printing in planning endoscopic endonasal transsphenoidal surgery is illustrated based on the analysis of patients with intracranial skull base diseases who received treatment in our department. Cranial computed tomography/magnetic resonance imaging data are attained preoperatively, and three-dimensional reconstruction is performed using MIMICS (Materialise, Leuven, Belgium). Models of intracranial skull base diseases are printed using a 3D printer before surgery. The models clearly demonstrate the morphologies of the intracranial skull base diseases and the spatial relationship with adjacent large vessels and bones. The printing time of each model is 12.52-15.32 h, and the cost ranges from 900 to 1500 RMB. The operative approach was planned in vitro, and patients recovered postoperatively well without severe complications or death. In a questionnaire about the application of 3D printing, experienced neurosurgeons achieved scores of 7.8-8.8 out of 10, while unexperienced neurosurgeons achieved scores of 9.2-9.8. Resection of intracranial skull base lesions is demonstrated to be well assisted by 3D printing technique, which has great potential in disclosing adjacent anatomical relationships and providing the required help to clinical doctors in preoperative planning.
基于对在我科接受治疗的颅内颅底疾病患者的分析,展示了 3D 打印在规划内镜经鼻蝶窦手术中的应用。术前获得头颅 CT/MRI 数据,并使用 Mimics(Materialise,比利时鲁汶)进行三维重建。手术前使用 3D 打印机打印颅内颅底疾病模型。模型清晰地显示了颅内颅底疾病的形态以及与相邻大血管和骨骼的空间关系。每个模型的打印时间为 12.52-15.32 小时,成本在 900 至 1500 元人民币之间。在体外进行手术入路规划,术后患者恢复良好,无严重并发症或死亡。在一份关于 3D 打印应用的调查问卷中,经验丰富的神经外科医生的得分为 7.8-8.8 分,而没有经验的神经外科医生的得分为 9.2-9.8 分。3D 打印技术有助于颅内颅底病变的切除,在揭示相邻解剖关系和为临床医生提供术前规划所需帮助方面具有很大的潜力。