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为全腕关节置换制造机械强度匹配的三维打印金属植入物。

Fabricating Stiffness-Matched Three Dimensional -Printed Metal Implants for Total Wrist Arthroplasty.

机构信息

From the Department of Plastic Surgery, University of Virginia Health System.

Department of Materials Science and Engineering, University of Virginia, Charlottesville, VA.

出版信息

Ann Plast Surg. 2023 Jun 1;90(6S Suppl 4):S426-S429. doi: 10.1097/SAP.0000000000003421. Epub 2023 Apr 17.

Abstract

BACKGROUND

Total wrist arthroplasty (TWA) is a motion-sparing treatment for pancarpal arthritis; however, complication rates up to 50% have limited widespread use. Implant micromotion, stress shielding, and periprosthetic osteolysis result in implant failure and revision to arthrodesis. Metal 3-dimensional (3D) printing allows for more accurate matching of surrounding bone biomechanical properties, theoretically reducing periprosthetic osteolysis. Herein, we use computed tomography to characterize the relationship of relative stiffness along the length of the distal radius with patient demographic factors.

METHODS

After institutional review, wrist computed tomography scans at a single institution between 2013 and 2021 were identified. Exclusion criteria were history of radius or carpal trauma or fracture. Collected demographics included age, sex, and comorbidities (including osteoporosis/osteopenia). Scans were analyzed using Materialize Mimics Innovation Suite 24.0 (Leuven, Belgium). Distal radius cortical density (in Hounsfield units) and medullary volume (in cubic millimeters) with relation to distance from the radiocarpal joint were recorded. Average values for each variable were used to 3D-printed distal radius trial components with stiffness matched to bone density by length.

RESULTS

Thirty-two patients met inclusion criteria. Distal radius cortical bone density progressively increased proximal to the radiocarpal joint, whereas medullary volume decreased; changes in both plateaued 20 mm proximal to the joint. Distal radius material properties differed by age, sex, and comorbidities. Total wrist arthroplasty implants were fabricated to match these variables as proof of concept.

CONCLUSIONS

Distal radius material properties vary along the bone length; conventional implants do not account for this variance. This study showed 3D-printed implants can be created to match bone properties along the length of the implant.

摘要

背景

全腕关节置换术(TWA)是一种治疗全腕关节炎的保关节治疗方法;然而,高达 50%的并发症发生率限制了其广泛应用。植入物微动、应力遮挡和假体周围骨溶解导致植入物失败并改为融合。金属 3 维(3D)打印允许更准确地匹配周围骨骼的生物力学特性,理论上减少假体周围骨溶解。在此,我们使用计算机断层扫描(CT)来描述桡骨远端长度方向上相对刚度与患者人口统计学因素之间的关系。

方法

在机构审查后,在单一机构 2013 年至 2021 年期间识别出腕关节 CT 扫描。排除标准为桡骨或腕部外伤或骨折史。收集的人口统计学资料包括年龄、性别和合并症(包括骨质疏松症/骨量减少)。使用 Materialize Mimics Innovation Suite 24.0(比利时鲁汶)对扫描进行分析。记录桡骨远端皮质骨密度(以亨氏单位表示)和髓腔体积(以立方毫米表示)与距桡腕关节的距离关系。每个变量的平均值用于 3D 打印与骨密度匹配的桡骨远端试模组件,匹配方式为长度匹配。

结果

32 名患者符合纳入标准。桡骨远端皮质骨密度在靠近桡腕关节的近端逐渐增加,而髓腔体积则减少;这两种变化在关节近端 20 毫米处趋于平稳。桡骨远端的材料特性因年龄、性别和合并症而异。全腕关节置换术植入物的制造要匹配这些变量,这是一个概念验证。

结论

桡骨远端的材料特性沿骨长度而变化;传统植入物没有考虑到这种变化。本研究表明,可以创建 3D 打印植入物以匹配植入物长度上的骨特性。

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