Choy Wen Jie, Parr William C H, Phan Kevin, Walsh William R, Mobbs Ralph J
University of New South Wales Sydney, Sydney, Australia.
NeuroSpine Surgery Research Group, Sydney, Australia.
J Spine Surg. 2018 Dec;4(4):757-769. doi: 10.21037/jss.2018.12.01.
Age-related degenerative changes and non-spondylotic pathologies of the cervical spine such as trauma and tumor can lead to compression of neurological structures and result in substantial alteration of the structural anatomy. The end-goal of surgical intervention is to decompress the neural structures which can be achieved via an anterior or a posterior approach, and stabilization of segments to restore stability and alignment. Three-dimensional printing (3DP or Additive Manufacturing) has been applied to the field of medicine, in particular orthopedics and neurosurgery. Coupled with advances of medical imaging such as computed tomography (CT) scans and magnetic resonance imaging (MRI), accurate 3D models of patient anatomy can be produced, and patient-specific implants (PSIs) for complex anatomical reconstruction have all been applied with positive outcomes. 3D printed implants have been applied in particular to the cervical spine predominantly due to the complex and relatively small osteological anatomy and the proximity of important neurovascular structures to the surgical sites. The purpose of this review is to evaluate the current application of 3DP for cervical spinal implants. This includes a review on the available literature on 3D printed PSIs and current available 3D printed "off-the-shelf" (OTS) implants (3D-OTS). Suitable materials for 3DP of spinal implants and the future prospect of cervical implants will be discussed. The review will be concluded with a suggested guide for carrying future studies to evaluate the efficacy and safety of 3DP for cervical spinal implants.
与年龄相关的颈椎退行性改变以及颈椎的非脊柱病变(如创伤和肿瘤)可导致神经结构受压,并导致结构解剖学发生实质性改变。手术干预的最终目标是对神经结构进行减压,这可以通过前路或后路实现,以及对节段进行稳定以恢复稳定性和对线。三维打印(3DP或增材制造)已应用于医学领域,特别是骨科和神经外科。结合计算机断层扫描(CT)和磁共振成像(MRI)等医学成像技术的进步,可以制作出患者解剖结构的精确三维模型,并且用于复杂解剖重建的定制植入物(PSIs)都已得到应用并取得了积极成果。3D打印植入物尤其应用于颈椎,主要是因为其骨解剖结构复杂且相对较小,以及重要神经血管结构靠近手术部位。本综述的目的是评估3DP在颈椎植入物中的当前应用。这包括对关于3D打印PSIs的现有文献以及当前可用的3D打印“现货”(OTS)植入物(3D-OTS)的综述。将讨论适合用于脊柱植入物3DP的材料以及颈椎植入物的未来前景。综述将以一份建议指南作为结尾,用于开展未来研究以评估3DP用于颈椎植入物的有效性和安全性。