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Three-dimensional-printing Technology in Hip and Pelvic Surgery: Current Landscape

机译:髋骨和盆腔外科手术中的三维打印技术:现状

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摘要

The use of three-dimensional (3D) printing is becoming more common, including in the field of orthopaedic surgery. There are currently four primary clinical applications for 3D-printing in hip and pelvic surgeries: (i) 3D-printed anatomical models for planning and surgery simulation, (ii) patient-specific instruments (PSI), (iii) generation of prostheses with 3D-additive manufacturing, and (iv) custom 3D-printed prostheses. Simulation surgery using a 3D-printed bone model allows surgeons to develop better surgical approaches, test the feasibility of procedures and determine optimal location and size for a prosthesis. PSI will help inform accurate bone cuts and prosthesis placement during surgery. Using 3D-additive manufacturing, especially with a trabecular pattern, is possible to produce a prosthesis mechanically stable and biocompatible prosthesis capable of promoting osseointergration. Custom implants are useful in patients with massive acetabular bone loss or periacetabular malignant bone tumors as they may improve the fit between implants and patient-specific anatomy. 3D-printing technology can improve surgical efficiency, shorten operation times and reduce exposure to radiation. This technology also offers new potential for treating complex hip joint diseases. Orthopaedic surgeons should develop guidelines to outline the most effective uses of 3D-printing technology to maximize patient benefits.
机译:三维(3D)打印的使用正变得越来越普遍,包括整形外科领域。目前,髋部和骨盆手术中3D打印有四个主要的临床应用:(i)用于计划和手术模拟的3D打印解剖模型,(ii)特定于患者的器械(PSI),(iii)使用3D生成假体-增材制造,以及(iv)定制3D打印的假体。使用3D打印的骨骼模型进行的模拟手术使外科医生可以开发更好的手术方法,测试手术的可行性,并确定假体的最佳位置和大小。 PSI将有助于在手术过程中提供准确的骨骼切割和假体放置信息。使用3D增材制造,尤其是具有小梁图案的增材制造,可以生产出机械上稳定且生物相容的,能够促进骨整合的假体。定制植入物对于髋臼大量骨丢失或髋臼周围恶性骨肿瘤的患者很有用,因为它们可以改善植入物与患者特定解剖结构之间的贴合性。 3D打印技术可以提高手术效率,缩短手术时间并减少暴露于辐射。该技术还为治疗复杂的髋关节疾病提供了新的潜力。整形外科医生应制定指南,概述3D打印技术的最有效用法,以最大程度地提高患者受益。

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