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基于三维表面扫描的3D打印患者特异性颅骨植入物的研发。

Development of 3D printed patient-specific skull implants based on 3d surface scans.

作者信息

Kropla Fabian, Winkler Dirk, Lindner Dirk, Knorr Patrick, Scholz Sebastian, Grunert Ronny

机构信息

Department of Neurosurgery, University of Leipzig, 04103, Leipzig, SN, Germany.

Department of Neurosurgery, University of Leipzig Medical Center, Liebigstr. 20, 04103, Leipzig, Germany.

出版信息

3D Print Med. 2023 Jun 30;9(1):19. doi: 10.1186/s41205-023-00183-x.

Abstract

Sometimes cranioplasty is necessary to reconstruct skull bone defects after a neurosurgical operation. If an autologous bone is unavailable, alloplastic materials are used. The standard technical approach for the fabrication of cranial implants is based on 3D imaging by computed tomography using the defect and the contralateral site. A new approach uses 3D surface scans, which accurately replicate the curvature of the removed bone flap. For this purpose, the removed bone flap is scanned intraoperatively and digitized accordingly. When using a design procedure developed for this purpose creating a patient-specific implant for each bone flap shape in short time is possible. The designed skull implants have complex free-form surfaces analogous to the curvature of the skull, which is why additive manufacturing is the ideal manufacturing technology here. In this study, we will describe the intraoperative procedure for the acquisition of scanned data and its further processing up to the creation of the implant.

摘要

有时,神经外科手术后需要进行颅骨成形术来修复颅骨骨缺损。如果无法使用自体骨,则使用异体材料。制造颅骨植入物的标准技术方法是基于计算机断层扫描的3D成像,使用缺损部位和对侧部位。一种新方法使用3D表面扫描,它能准确复制移除骨瓣的曲率。为此,在术中对移除的骨瓣进行扫描并相应地数字化。使用为此目的开发的设计程序,可以在短时间内为每个骨瓣形状创建定制的植入物。设计的颅骨植入物具有类似于颅骨曲率的复杂自由曲面,这就是为什么增材制造是这里理想的制造技术。在本研究中,我们将描述获取扫描数据的术中程序及其进一步处理,直至植入物的创建。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f20/10311874/ece9c7e2d710/41205_2023_183_Fig1_HTML.jpg

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