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首页> 外文期刊>Microsurgery. >3D-PRINTED HAPTIC 'REVERSE' MODELS FOR PREOPERATIVE PLANNING IN SOFT TISSUE RECONSTRUCTION: A CASE REPORT
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3D-PRINTED HAPTIC 'REVERSE' MODELS FOR PREOPERATIVE PLANNING IN SOFT TISSUE RECONSTRUCTION: A CASE REPORT

机译:在软组织重建中进行术前计划的3D打印触觉“反向”模型:病例报告

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摘要

In reconstructive surgery, preoperative planning is essential for optimal functional and aesthetic outcome. Creating a three-dimensional (3D) model from two-dimensional (2D) imaging data by rapid prototyping has been used in industrial design for decades but has only recently been introduced for medical application. 3D printing is one such technique that is fast, convenient, and relatively affordable. In this report, we present a case in which a reproducible method for producing a 3D-printed reverse model representing a skin wound defect was used for flap design and harvesting. This comprised a 82-year-old man with an exposed ankle prosthesis after serial soft tissue debridements for wound infection. Soft tissue coverage and dead-space filling were planned with a composite radial forearm free flap (RFFF). Computed tomographic angiography (CTA) of the donor site (left forearm), recipient site (right ankle), and the left ankle was performed. 2D data from the CTA was 3D-reconstructed using computer software, with a 3D image of the left ankle used as a control. A 3D model was created by superimposing the left and right ankle images, to create a reverse image of the defect, and printed using a 3D printer. The RFFF was thus planned and executed effectively, without complication. To our knowledge, this is the first report of a mechanism of calculating a soft tissue wound defect and producing a 3D model that may be useful for surgical planning. 3D printing and particularly reverse modeling may be versatile options in reconstructive planning, and have the potential for broad application. (c) 2014 Wiley Periodicals, Inc. Microsurgery 35:148-153, 2015.
机译:在重建手术中,术前计划对于实现最佳功能和美学效果至关重要。通过快速原型制作从二维(2D)成像数据创建三维(3D)模型已经在工业设计中使用了数十年,但直到最近才被引入医学应用。 3D打印就是这样一种技术,它快速,方便且相对便宜。在本报告中,我们介绍了一种情况,其中使用一种可再现的方法来制作代表皮肤伤口缺陷的3D打印反向模型,用于皮瓣的设计和收获。其中包括一名82岁的男子,在因伤口感染而进行了一系列软组织清创术后,踝关节假体暴露在外。计划使用复合径向无前臂皮瓣(RFFF)进行软组织覆盖和死腔填充。进行了供体部位(左前臂),受体部位(右脚踝)和左脚踝的计算机断层血管造影(CTA)。使用计算机软件对来自CTA的2D数据进行3D重建,并将左脚踝的3D图像用作对照。通过叠加左右脚踝图像来创建3D模型,以创建缺陷的反向图像,然后使用3D打印机进行打印。因此,RFFF的计划和执行得到了有效而没有复杂性。据我们所知,这是有关计算软组织伤口缺损并生成可能对手术计划有用的3D模型的机制的首次报告。 3D打印(尤其是反向建模)可能是重构计划中的通用选项,并且具有广泛应用的潜力。 (c)2014 Wiley Periodicals,Inc.显微外科手术35:148-153,2015。

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