Haleem Abid, Javaid Mohd
Department of Mechanical Engineering, Jamia Millia Islamia, New Delhi, India.
J Clin Orthop Trauma. 2018 Jul-Sep;9(3):213-217. doi: 10.1016/j.jcot.2018.07.002. Epub 2018 Jul 5.
To study the role of Computed tomography (CT) and Magnetic resonance imaging (MRI) for design and development of orthopaedic model using additive manufacturing (AM) technologies.
A significant number of research papers in this area are studied to provide the direction of development along with the future scope.
Briefly discussed various steps used to create a 3D model by Additive Manufacturing using CT and MRI scan. These scanning technologies are used to produce medical as well as orthopaedic implants by using AM technologies. The images so produced are exported in different software like OsiriX Imaging Software, 3D slicer, Mimics, Magics, 3D doctor and InVesalius to produce a 3D digital model. Various criteria's achieved by CT and MRI scan for design and development of orthopaedic implant using additive manufacturing are also discussed briefly. AM model created by this process show exact shape, size, dimensions, textures, colour and features.
AM technologies help to convert the digital model into a 3D physical object, thereby improving the understanding of patient anatomy for treatment as well as for educational purpose. These scanning technologies have various applications to enhance the AM in the field of orthopaedic. In orthopaedic every patient model is a customised unit, sourced from the individual patient. 3D CAD data captured by these scanning technologies are directly exported in standard triangulate language (STL) format for printing by AM technologies. Crossestion of the physical model fabricated by this process shows a patient's anatomy if the model prepared by using the bone-like material.
研究计算机断层扫描(CT)和磁共振成像(MRI)在利用增材制造(AM)技术设计和开发骨科模型中的作用。
研究该领域大量的研究论文,以提供发展方向和未来前景。
简要讨论了使用CT和MRI扫描通过增材制造创建3D模型所采用的各个步骤。这些扫描技术用于通过AM技术生产医疗以及骨科植入物。所生成的图像被导出到不同的软件中,如OsiriX成像软件、3D切片软件、Mimics、Magics、3D doctor和InVesalius,以生成3D数字模型。还简要讨论了CT和MRI扫描在使用增材制造设计和开发骨科植入物方面所达到的各种标准。通过该过程创建的AM模型显示出精确的形状、尺寸、维度、纹理、颜色和特征。
AM技术有助于将数字模型转换为3D实物,从而提高对患者解剖结构的理解,以用于治疗以及教育目的。这些扫描技术在增强骨科领域的AM方面有各种应用。在骨科中,每个患者模型都是一个定制单元,源自个体患者。通过这些扫描技术捕获的3D CAD数据以标准三角测量语言(STL)格式直接导出,以便通过AM技术进行打印。如果使用类似骨头的材料制备模型,通过此过程制造的物理模型的横截面会显示患者的解剖结构。