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采用两种新型设计的 3D 打印间置物假体重建股骨肿瘤切除术后的大块骨缺损:一项多技术联合应用的临床分析研究。

Reconstruction of massive bone defects after femoral tumor resection using two new-designed 3D-printed intercalary prostheses: a clinical analytic study with the cooperative utilization of multiple technologies.

机构信息

Department of Orthopaedics, Shandong Provincial Hospital Affiliated to Shandong First Medical University, Jinan, 250021, Shandong, China.

Department of Orthopaedics, Qilu Hospital, Cheeloo College of Medicine, Shandong University, Jinan, 250012, China.

出版信息

BMC Musculoskelet Disord. 2023 Jan 25;24(1):67. doi: 10.1186/s12891-023-06171-w.

Abstract

BACKGROUND

To reconstruct massive bone defects of the femoral diaphysis and proximal end with limited bilateral cortical bone after joint-preserving musculoskeletal tumor resections, two novel 3D-printed customized intercalary femoral prostheses were applied.

METHODS

A series of nine patients with malignancies who received these novel 3D-printed prostheses were retrospectively studied between July 2018 and November 2021. The proximal and diaphyseal femur was divided into three regions of interest (ROIs) according to anatomic landmarks, and anatomic measurements were conducted on 50 computed tomography images showing normal femurs. Based on the individual implant-involved ROIs, osteotomy level, and anatomical and biomechanical features, two alternative 3D-printed prostheses were designed. In each patient, Hounsfield Unit (HU) value thresholding and finite element analysis were conducted to identify the bone trabecula and calcar femorale and to determine the stress distribution, respectively. We described the characteristics of each prosthesis and surgical procedure and recorded the intraoperative data. All patients underwent regular postoperative follow-up, in which the clinical, functional and radiographical outcomes were evaluated.

RESULTS

With the ROI division and radiographic measurements, insufficient bilateral cortical bones for anchoring the traditional stem were verified in the normal proximal femur. Therefore, two 3D-printed intercalary endoprostheses, a Type A prosthesis with a proximal curved stem and a Type B prosthesis with a proximal anchorage-slot and corresponding locking screws, were designed. Based on HU value thresholding and finite element analysis, the 3D-printed proximal stems in all prostheses maximally preserved the trabecular bone and calcar femorale and optimized the biomechanical distribution, as did the proximal screws. With the 3D-printed osteotomy guide plates and reaming guide plates, all patients underwent the operation uneventfully with a satisfactory duration (325.00 ± 62.60 min) and bleeding volume (922.22 ± 222.36 ml). In the follow-up, Harris Hip and Musculoskeletal Tumor Society scores were ameliorated after surgery (P < 0.001 and P < 0.001, respectively), reliable bone ingrowth was observed, and no major complications occurred.

CONCLUSIONS

Two novel 3D-printed femoral intercalary prostheses, which achieved acceptable overall postoperative outcomes, were used as appropriate alternatives for oncologic patients with massive bone defects and limited residual bone and increased the opportunities for joint-preserving tumor resection. Several scientific methodologies utilized in this study may promote the clinical design proposals of 3D-printed implants.

摘要

背景

为了重建保肢性肌肉骨骼肿瘤切除术后股骨骨干和近端严重骨缺损,应用了两种新型 3D 打印定制型股骨假体。

方法

回顾性分析 2018 年 7 月至 2021 年 11 月间接受这两种新型 3D 打印假体的 9 例恶性肿瘤患者的临床资料。根据解剖标志将股骨近端和骨干分为 3 个感兴趣区(ROI),并对 50 例正常股骨的 CT 图像进行解剖学测量。基于个体假体涉及的 ROI、截骨水平和解剖学及生物力学特征,设计了两种替代 3D 打印假体。在每位患者中,通过体素 HU 值阈值和有限元分析确定骨小梁和股骨距,并分别确定应力分布。我们描述了每种假体的特点和手术过程,并记录了术中数据。所有患者均接受定期术后随访,评估临床、功能和影像学结果。

结果

通过 ROI 划分和影像学测量,我们在正常股骨近端证实了传统假体近端的双侧皮质骨不足以固定。因此,我们设计了两种 3D 打印的节段性假体,A型假体具有近端弯曲的柄,B 型假体具有近端锚固槽和相应的锁定螺钉。基于 HU 值阈值和有限元分析,所有假体的 3D 打印近端柄最大限度地保留了骨小梁和股骨距,并优化了生物力学分布,近端螺钉也是如此。使用 3D 打印截骨导板和扩髓导板,所有患者均顺利完成手术,手术时间(325.00±62.60 分钟)和出血量(922.22±222.36 毫升)均令人满意。在随访中,患者的髋关节 Harris 评分和肌肉骨骼肿瘤学会评分在术后均得到改善(P<0.001 和 P<0.001),观察到可靠的骨长入,且无重大并发症发生。

结论

两种新型 3D 打印股骨假体获得了可接受的总体术后效果,为患有严重骨缺损和有限残余骨的肿瘤患者提供了合适的替代方案,并增加了保肢性肿瘤切除的机会。本研究中应用的几种科学方法可能会促进 3D 打印植入物的临床设计方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e4f/9875495/6d28dfed0042/12891_2023_6171_Fig1_HTML.jpg

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