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[使用3D打印优化面中植入物以固定磁性鼻假体的拟合]

[Optimized fitting of a midface implant to anchor a magnetic nasal prosthesis using 3D printing].

作者信息

Wrobel Christian, Keppeler Daniel, Meyer Alexander C

机构信息

Klinik für Hals-Nasen-Ohrenheilkunde, Universitätsmedizin Göttingen, Georg-August-Universität Göttingen, Robert-Koch-Str. 40, 37075, Göttingen, Deutschland.

Institut für Auditorische Neurowissenschaften, Universitätsmedizin Göttingen, 37075, Göttingen, Deutschland.

出版信息

HNO. 2022 Mar;70(3):200-205. doi: 10.1007/s00106-021-01100-6. Epub 2021 Aug 31.

Abstract

BACKGROUND

Plate-based anchorage systems for craniofacial prostheses offer advantages over extraoral solitary titanium implants in terms of the flexible choice of mounting points and higher stability. Disadvantages become apparent in the complex individual intraoperative adaptation of the plate-based systems to the usually poorly accessible bone. The current article presents a method to overcome these disadvantages and make greater use of the advantages of plate-based systems.

MATERIALS AND METHODS

The bony midface of a patient who had undergone rhinectomy for cancer of the nasal entrance was reconstructed as a virtual 3D model based on preoperative CT. The open-source software (3D-Slicer) allowed easy and fast reconstruction as well as adaptation for 3D printing using transparent plastic (MED610; stratasys Ltd., MN, USA).

RESULTS

A titanium mini-plate (MEDICON) for anchoring the nasal prosthesis could be fitted extremely precisely on the midface 3D print. Important anatomical structures were spared, and screw placement was selected according to the individual bone thickness. Implantation of the in-advance fitted titanium plate was performed without complications and without further adjustments.

CONCLUSION

In-advance fitting of plate-based systems for anchorage of craniofacial prostheses using 3D printing of the midface overcomes their disadvantages of time-consuming and possibly imprecise individual adaptation. This method further exploits the advantages of higher stability through more possible mounting points, even in thinner bone, to prevent loosening. In addition, in-advance fitting of titanium plates on the 3D model enables better identification and protection of important anatomical structures and shortens operative time.

摘要

背景

用于颅面修复体的基于板的锚固系统,在安装点的灵活选择和更高的稳定性方面,比口外单独钛植入物具有优势。基于板的系统的缺点在术中复杂的个体化适配中变得明显,这种适配通常是针对难以触及的骨骼。本文介绍了一种克服这些缺点并更多地利用基于板的系统优势的方法。

材料与方法

对一名因鼻前庭癌接受鼻切除术的患者的骨性中面部,基于术前CT重建为虚拟3D模型。开源软件(3D-Slicer)允许轻松快速地重建,并使用透明塑料(MED610;Stratasys有限公司,明尼苏达州,美国)进行3D打印适配。

结果

用于固定鼻修复体的钛微型板(MEDICON)可以极其精确地安装在中面部3D打印模型上。重要的解剖结构得以保留,螺钉放置根据个体骨厚度进行选择。预先适配的钛板植入过程顺利,无需进一步调整。

结论

使用中面部3D打印对用于颅面修复体锚固的基于板的系统进行预先适配,克服了其耗时且可能不精确的个体化适配缺点。这种方法进一步利用了通过更多可能的安装点实现更高稳定性的优势,即使在较薄的骨骼中也能防止松动。此外,在3D模型上预先适配钛板能够更好地识别和保护重要解剖结构,并缩短手术时间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6235/8866386/9303251307a9/106_2021_1100_Fig1_HTML.jpg

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