首页> 美国卫生研究院文献>JAAOS Global Research Reviews >Using a 3D Printed Model as a Preoperative Tool for Pelvic Triple Osteotomy in Children: Proof of Concept and Evaluation of Geometric Accuracy
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Using a 3D Printed Model as a Preoperative Tool for Pelvic Triple Osteotomy in Children: Proof of Concept and Evaluation of Geometric Accuracy

机译:使用3D打印模型作为儿童盆腔三重截骨术的术前工具:概念验证和几何准确性评估

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摘要

The feasibility of 3D printing in clinical practice depends not only on the usability but also on the reliability of the method. The aims of this study were to demonstrate the feasibility of a 3D printing method for pediatric patients planned for pelvic triple osteotomy and to present a reliable quality assessment strategy for these printed models. A 10-year-old boy with Legg-Calvé-Perthes disease underwent a triple pelvic osteotomy. Preoperative and postoperative CT scans were printed as 3D models. An image-based quality assessment strategy was proposed: The printed 3D models were imaged with CT. The model images were systematically compared with the corresponding ground truth images, ie, patient images, to determine the reliability using distance measurements in the model and ground truth images. The 3D printed models were found useful in both the preoperative and postoperative stages. The models were found reliable: Strong linear correlation between the model and ground truth images both preoperatively (R = 0.99; P < 0.001) and postoperatively (R = 1.00; P < 0.001) was found. The study demonstrates the usefulness of 3D printed models in clinical practice. We also present a robust and simple strategy, using common clinical tools, to assess the reliability of 3D printed models.
机译:3D打印在临床实践中的可行性不仅取决于可用性,还取决于该方法的可靠性。这项研究的目的是证明针对计划进行骨盆三重截骨术的儿科患者的3D打印方法的可行性,并为这些打印模型提供可靠的质量评估策略。一个患有Legg-Calvé-Perthes病的10岁男孩接受了三次骨盆截骨术。术前和术后CT扫描打印为3D模型。提出了一种基于图像的质量评估策略:使用CT对打印的3D模型进行成像。系统将模型图像与相应的地面真实图像(即患者图像)进行比较,以使用模型和地面真实图像中的距离测量来确定可靠性。发现3D打印模型在术前和术后阶段均有用。该模型被认为是可靠的:在术前(R = 0.99; P <0.001)和术后(R = 1.00; P <0.001)的模型与地面真实图像之间存在强线性相关性。该研究证明了3D打印模型在临床实践中的有用性。我们还提供了一种鲁棒且简单的策略,使用常见的临床工具来评估3D打印模型的可靠性。

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