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3D 打印模型在治疗胫骨平台骨折畸形愈合关节内截骨术中的疗效。

The Efficacy of 3D Printing Model in the Intraarticular Osteotomy in the Treatment of Malunion of Tibial Plateau Fracture.

机构信息

Department of Orthopaedic Surgery, The Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, China.

Orthopaedics Research Institute of Zhejiang University, Hangzhou, China.

出版信息

Orthop Surg. 2023 Jan;15(1):85-92. doi: 10.1111/os.13554. Epub 2022 Nov 14.

Abstract

OBJECTIVES

Three-dimensional (3D) printing technology has shown potential advantages in accurate and efficient tibial plateau fracture (TPF) treatment. This technology can provide structural morphology to repair fracture fragments. Here, we summarize our experience with the use of 3D printing technology during intraarticular osteotomy in the treatment of the malunion of TPF.

METHODS

The patients who were treated with malunion of TPF in our hospital between January 2015 and December 2018 were retrospectively analyzed. These patients were divided into two groups: the conventional group without 3D-printed model application and the 3D printing group with 3D-printed model application. All patients received the intraarticular osteotomy during operation, and we compared the operation time (min), fracture healing time (months), postoperative knee Rasmussen scores (0-30 points), knee mobility range (0-140°) (the independent t-test), fracture reduction evaluation (Biggi's method) (the chi-square test: Fisher's exact test), and postoperative complications of each group.

RESULTS

Twenty-six patients aged 18-65 years who underwent TPF revision operation were included in this study, including 18 patients in the conventional group, and eight patients in the 3D printing group. The follow-up time was 24-48 months, and the operation time was 185 min in the conventional group and 180 min in the 3D printing group. All patients received a bone union at the last follow-up. The healing time was 4.2 months in the conventional group and 3.75 months in the 3D printing group (p > 0.05). The respective postoperative Rasmussen scores were 24.6 and 26.2, and postoperative knee mobility was 103.5° and 118.5° in the conventional group and 3D printing group, respectively. Both the Rasmussen scores and degrees of mobility were significantly improved after surgery (p < 0.05), and the postoperative knee mobility was significantly better in the 3D printing group versus the conventional group (p < 0.05). Four patients still had a 2-mm collapse on the articular surface, and two patients still had slight valgus (<5°) in the conventional group. Only one case in the 3D printing group suffered from an articular surface collapse. Superficial wound infections occurred in two patients in the conventional group.

CONCLUSION

The results show that 3D printing technology is an effective preoperative preparation in the treatment of TPF malunion. This technology can facilitate accurate preoperative planning to select the optimal surgical approach, plan the implant placement, visualize the screw trajectory, and anticipate possible intraoperative difficulties.

摘要

目的

三维(3D)打印技术在胫骨平台骨折(TPF)的精准、高效治疗中显示出了潜在的优势。该技术可提供结构形态以修复骨折碎片。在此,我们总结了使用 3D 打印技术辅助关节内截骨治疗胫骨平台骨折畸形愈合的经验。

方法

回顾性分析我院 2015 年 1 月至 2018 年 12 月收治的胫骨平台骨折畸形愈合患者。这些患者被分为两组:未应用 3D 打印模型的常规组和应用 3D 打印模型的 3D 打印组。所有患者均在术中接受关节内截骨,比较两组的手术时间(min)、骨折愈合时间(月)、术后膝关节 Rasmussen 评分(0-30 分)、膝关节活动范围(0-140°)(独立样本 t 检验)、骨折复位评估(Biggi 法)(卡方检验:Fisher 确切概率法)以及术后并发症。

结果

本研究共纳入 26 例 18-65 岁的 TPF 翻修手术患者,其中常规组 18 例,3D 打印组 8 例。随访时间为 24-48 个月,常规组手术时间为 185 min,3D 打印组为 180 min。所有患者末次随访时均获得骨性愈合。常规组骨折愈合时间为 4.2 个月,3D 打印组为 3.75 个月(p>0.05)。常规组和 3D 打印组术后 Rasmussen 评分分别为 24.6 分和 26.2 分,术后膝关节活动度分别为 103.5°和 118.5°。两组术后 Rasmussen 评分和膝关节活动度均明显改善(p<0.05),3D 打印组术后膝关节活动度明显优于常规组(p<0.05)。常规组仍有 4 例存在 2 mm 的关节面塌陷,2 例仍存在轻微的外翻(<5°);3D 打印组仅 1 例出现关节面塌陷。常规组有 2 例患者发生浅表伤口感染。

结论

结果表明,3D 打印技术是胫骨平台骨折畸形愈合治疗中一种有效的术前准备方法。该技术可便于准确的术前规划,选择最佳手术入路、规划植入物的放置、可视化螺钉轨迹并预测术中可能出现的困难。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29d4/9837246/0b6b4203db7f/OS-15-85-g003.jpg

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