Chopra Sanjeev, Boro Ashim Kumar, Sinha Virendra Deo
Department of Neurosurgery, Sawai Man Singh Medical College, Jaipur, India.
J Neurosci Rural Pract. 2021 Sep 16;12(4):630-634. doi: 10.1055/s-0041-1734001. eCollection 2021 Oct.
Three-dimensional (3D) printing technology in neurosurgery has gained popularity nowadays. Skull base contains many major neurovascular structures in a confined space, along with anatomical variations making surgical approaches to this region challenging. 3D-printed model of skull base tumors consists of the patient's bony skull base, actual tumor dimensions, and surrounding major neurovascular structures. We included a total number of five patients with skull base tumors (one case of planum sphenoidale meningioma, two cases of sellar tumor with suprasellar extension, and two cases of cerebellopontine angle tumor) and 3D-printed tumor model of each of them. These models were used for preoperative simulation and served as very true to life training tool. These help in increasing the efficacy of the surgeon, improves surgical safety and ergonomics. They were also used for patient counselling, educating about the disease, the surgical procedure, and associated risks.
如今,三维(3D)打印技术在神经外科领域已颇受欢迎。颅底在有限的空间内包含许多主要的神经血管结构,且存在解剖变异,这使得该区域的手术入路颇具挑战性。颅底肿瘤的3D打印模型包括患者的骨性颅底、实际肿瘤大小以及周围主要的神经血管结构。我们共纳入了5例颅底肿瘤患者(1例蝶骨平台脑膜瘤、2例伴有鞍上延伸的鞍区肿瘤以及2例桥小脑角肿瘤),并为每例患者制作了3D打印肿瘤模型。这些模型用于术前模拟,是非常逼真的训练工具。它们有助于提高外科医生的手术效率,提升手术安全性和人体工程学效果。它们还用于患者咨询,向患者讲解疾病、手术过程及相关风险。