Provaggi Elena, Leong Julian J H, Kalaskar Deepak M
1 Centre for Nanotechnology & Tissue Engineering, Division of Surgery and Interventional Science, UCL Medical School, University College London, London, UK.
2 Royal National Orthopaedic Hospital, Stanmore, UK.
Proc Inst Mech Eng H. 2017 Jun;231(6):471-486. doi: 10.1177/0954411916667761. Epub 2016 Sep 22.
The latest and fastest-growing innovation in the medical field has been the advent of three-dimensional printing technologies, which have recently seen applications in the production of low-cost, patient-specific medical implants. While a wide range of three-dimensional printing systems has been explored in manufacturing anatomical models and devices for the medical setting, their applications are cutting-edge in the field of spinal surgery. This review aims to provide a comprehensive overview and classification of the current applications of three-dimensional printing technologies in spine care. Although three-dimensional printing technology has been widely used for the construction of patient-specific anatomical models of the spine and intraoperative guide templates to provide personalized surgical planning and increase pedicle screw placement accuracy, only few studies have been focused on the manufacturing of spinal implants. Therefore, three-dimensional printed custom-designed intervertebral fusion devices, artificial vertebral bodies and disc substitutes for total disc replacement, along with tissue engineering strategies focused on scaffold constructs for bone and cartilage regeneration, represent a set of promising applications towards the trend of individualized patient care.
医学领域最新且发展最快的创新是三维打印技术的出现,该技术最近已应用于低成本、针对患者定制的医疗植入物生产。虽然在制造用于医疗环境的解剖模型和器械时已经探索了多种三维打印系统,但其应用在脊柱外科领域尚属前沿。本综述旨在全面概述和分类三维打印技术在脊柱护理中的当前应用。尽管三维打印技术已广泛用于构建针对患者定制的脊柱解剖模型和术中导板模板,以提供个性化手术规划并提高椎弓根螺钉置入准确性,但仅有少数研究聚焦于脊柱植入物的制造。因此,三维打印定制椎间融合装置、人工椎体和用于全椎间盘置换的椎间盘替代物,以及专注于用于骨和软骨再生的支架构建的组织工程策略,代表了朝着个性化患者护理趋势的一系列有前景的应用。