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使用基于医院的3D打印患者特异性器械进行全膝关节置换术的准确性:一项放射学研究。

Accuracy of total knee arthroplasty using hospital-based 3D printed patient-specific instrumentation: A radiology research.

作者信息

Nang Vo Sy Quyen, Hieu Pham Trung, Nam Vu Tu, Dung Tran Trung, Toan Duong Dinh

机构信息

Hanoi Medical University, Hanoi, Viet Nam.

Center for Orthopaedic and Sport Medicine, Vinmec Healthcare System, Hanoi, Viet Nam.

出版信息

J Orthop. 2024 Oct 21;62:70-74. doi: 10.1016/j.jor.2024.10.032. eCollection 2025 Apr.

Abstract

BACKGROUND

Patient-specific instruments (PSIs) were reported to improve implant position and rotation accuracy in total knee arthroplasty (TKA), among other benefits. Most PSIs used in TKA were commercial products from implant manufacturers, which could be time-consuming and could potentially affect accuracy as they relied on engineer's decision. This study aimed to present the radiological outcomes of PSI produced by the 3D printing facility at our hospital, with direct involvement of the surgeon in its design.

METHODS

This prospective study enrolled 45 patients who underwent mechanically aligned TKA. Preoperative whole-limb 3D-CT scans were obtained to create the sizing plan. The surgeon identified the position of the cut plane and guide pin locations on software, which were then forwarded to engineers for further processing. Subsequently, the PSI was fabricated using in-hospital 3D resin printers. During surgery, after removing all remaining cartilage, the PSI was utilized on the bone surfaces to assist surgeons in drilling pinhole positions for the manufacturer's cutting instruments. Post-surgery, CT scans were acquired and overlaid onto the 3D model of the implant to compare to the plan.

RESULTS

On average, it took three days to prepare for the surgery using PSI. 100 % of patients had implant sizes that matched the preconception template. The mean postoperative hip-knee angle was 178.1° ± 1.34°. The mean femoral component rotation angle relative to the surgical transepicondylar axis (sTEA) and the mean rotation mismatch between the femur and tibial component were 0.99° ± 0.84° and 0.91° ± 1.61°, respectively.

CONCLUSIONS

Preliminary radiological results demonstrated that in-hospital PSI was a useful technique for improving the accuracy of implant positioning in TKA, especially in controlling the rotational alignment.

摘要

背景

据报道,定制器械(PSIs)在全膝关节置换术(TKA)中可改善植入物位置和旋转精度等诸多益处。TKA中使用的大多数PSIs是植入物制造商的商业产品,由于依赖工程师的决策,可能耗时且可能影响精度。本研究旨在展示我院3D打印设备生产的PSIs的放射学结果,外科医生直接参与其设计。

方法

本前瞻性研究纳入了45例行机械对线TKA的患者。术前获取全下肢3D-CT扫描以制定尺寸计划。外科医生在软件上确定切割平面的位置和导针位置,然后转发给工程师进行进一步处理。随后,使用医院内的3D树脂打印机制作PSI。手术过程中,在去除所有残留软骨后,将PSI应用于骨表面,以协助外科医生为制造商的切割器械钻出针孔位置。术后,获取CT扫描并叠加到植入物的3D模型上与计划进行比较。

结果

平均而言,使用PSI为手术做准备需要三天时间。100%的患者植入物尺寸与预想模板匹配。术后平均髋膝角为178.1°±1.34°。股骨组件相对于手术经髁轴(sTEA)的平均旋转角度以及股骨和胫骨组件之间的平均旋转不匹配分别为0.99°±0.84°和0.91°±1.61°。

结论

初步放射学结果表明,医院内的PSI是提高TKA中植入物定位精度的有用技术,尤其是在控制旋转对线方面。

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Coronal alignment in total knee arthroplasty: a review.全膝关节置换术中的冠状面对线:综述。
J Orthop Traumatol. 2023 May 22;24(1):24. doi: 10.1186/s10195-023-00702-w.
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2D versus 3D templating in total knee arthroplasty.全膝关节置换术中的二维与三维模板技术
Knee. 2016 Jan;23(1):149-51. doi: 10.1016/j.knee.2015.08.014. Epub 2016 Jan 5.

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