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用于治疗眶底骨折的个性化形状记忆植入物的概念。

Concept of patient-specific shape memory implants for the treatment of orbital floor fractures.

作者信息

Grunert Ronny, Wagner Maximilian, Rotsch Christian, Essig Harald, Posern Susanna, Pabst Friedemann, Drossel Welf-Guntram, Lichtenstein Juergen

机构信息

Fraunhofer Institute for Machine Tools and Forming Technology IWU, Noethnitzer Straße 44, 01187, Dresden, Germany.

Department of Orthopaedics, Traumatology and Plastic Surgery, University Leipzig, Liebigstrasse 20, 04103, Leipzig, Germany.

出版信息

Oral Maxillofac Surg. 2017 Jun;21(2):179-185. doi: 10.1007/s10006-017-0615-4. Epub 2017 Mar 10.

Abstract

PURPOSE

We will aim to develop implants made of a Ni-Ti shape memory alloy which can be applied for the treatment of midface fractures, such as isolated orbital floor fractures. These can then be implanted in a compressed form and unfold automatically in the body. With the help of newly developed application instruments, the implants can be applied along transnasal and transantral approaches into the maxillary sinus. Our objective is to evaluate the operation process and the functionality of these implants, already in a pre-investigation by an experienced surgeon on a phantom.

METHODS

The functionality of the surgical procedure and an implant prototype were both evaluated with the help of a realistic phantom. The minimally invasive application was carried out using the transnasal and transantral approach. Instruments and implant were rated individually on a scale, from -2 (not at all) to +2 (very good) for vaious criteria, such as the implants functionality or the ergonomics of the entire procedure. For a geometric comparison between the manufactured implant and the planned target geometry, the implants were scanned by micro-computed tomography. CAD models were derived from the scans by using reverse engineering.

RESULTS

Both the implants and the application procedure were assessed as good; thus, the implant concept is suitable for further development.

CONCLUSIONS

Implants made of shape memory alloys could allow in the future and allow less invasive access to treat orbital floor fractures. The implant design has to be modified that the implant can be stabilized and fixed with screws or a suture to avoid dislocation or implant loosening. The complication rates and risks of conventional orbital reconstructions should be lowered by this new method.

摘要

目的

我们旨在研发由镍钛形状记忆合金制成的植入物,用于治疗面中部骨折,如单纯眶底骨折。这些植入物可以以压缩形式植入,并在体内自动展开。借助新开发的应用器械,可通过经鼻和经窦途径将植入物植入上颌窦。我们的目标是在经验丰富的外科医生对模型进行的预研究中,评估这些植入物的手术过程和功能。

方法

借助逼真的模型评估手术过程的功能和植入物原型。采用经鼻和经窦途径进行微创应用。根据各种标准,如植入物功能或整个手术过程的人体工程学,对器械和植入物进行单独评分,范围从 -2(完全不行)到 +2(非常好)。为了对制造的植入物和计划的目标几何形状进行几何比较,通过微计算机断层扫描对植入物进行扫描。利用逆向工程从扫描中导出CAD模型。

结果

植入物和应用过程均被评估为良好;因此,植入物概念适合进一步开发。

结论

形状记忆合金制成的植入物未来可能允许以侵入性较小的方式治疗眶底骨折。必须修改植入物设计,以便可以用螺钉或缝线稳定和固定植入物,以避免脱位或植入物松动。这种新方法应能降低传统眼眶重建的并发症发生率和风险。

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