首页> 美国卫生研究院文献>SICOT-J >Putting 3D modelling and 3D printing into practice: virtual surgery and preoperative planning to reconstruct complex post-traumatic skeletal deformities and defects
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Putting 3D modelling and 3D printing into practice: virtual surgery and preoperative planning to reconstruct complex post-traumatic skeletal deformities and defects

机译:将3D建模和3D打印付诸实践:虚拟手术和术前计划以重建复杂的创伤后骨骼畸形和缺陷

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摘要

3D printing technology has revolutionized and gradually transformed manufacturing across a broad spectrum of industries, including healthcare. Nowhere is this more apparent than in orthopaedics with many surgeons already incorporating aspects of 3D modelling and virtual procedures into their routine clinical practice. As a more extreme application, patient-specific 3D printed titanium truss cages represent a novel approach for managing the challenge of segmental bone defects. This review illustrates the potential indications of this innovative technique using 3D printed titanium truss cages in conjunction with the Masquelet technique. These implants are custom designed during a virtual surgical planning session with the combined input of an orthopaedic surgeon, an orthopaedic engineering professional and a biomedical design engineer. The ability to 3D model an identical replica of the original intact bone in a virtual procedure is of vital importance when attempting to precisely reconstruct normal anatomy during the actual procedure. Additionally, other important factors must be considered during the planning procedure, such as the three-dimensional configuration of the implant. Meticulous design is necessary to allow for successful implantation through the planned surgical exposure, while being aware of the constraints imposed by local anatomy and prior implants. This review will attempt to synthesize the current state of the art as well as discuss our personal experience using this promising technique. It will address implant design considerations including the mechanical, anatomical and functional aspects unique to each case.
机译:3D打印技术彻底改变了制造业,并逐步改变了包括医疗保健在内的众多行业。在整形外科中,这是最明显的,因为许多外科医生已经将3D建模和虚拟程序的各个方面纳入了他们的常规临床实践中。作为更极端的应用,针对患者的3D打印钛桁架笼代表了一种新颖的方法来应对节段性骨缺损的挑战。这篇综述说明了结合3D打印钛桁架笼和Masquelet技术使用此创新技术的潜在迹象。这些植入物是在虚拟外科手术计划期间由骨科医生,骨科工程专业人士和生物医学设计工程师共同输入后定制设计的。在实际过程中尝试精确重建正常解剖结构时,在虚拟过程中对完整的原始骨骼的相同副本进行3D模型建模的能力至关重要。此外,在规划过程中还必须考虑其他重要因素,例如植入物的三维结构。细致的设计对于通过计划的手术暴露成功植入是必要的,同时要注意局部解剖结构和先前植入物所施加的限制。这篇综述将试图综合当前的技术水平,并讨论使用这种有前途的技术的个人经验。它将解决植入物设计方面的考虑,包括每种情况所独有的机械,解剖和功能方面。

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