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3D printing from microfocus computed tomography (micro-CT) in human specimens: education and future implications

机译:人体标本中的微聚焦计算机断层扫描(micro-CT)3D打印:教育和未来意义

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摘要

Microfocus CT (micro-CT) is an imaging method that provides three-dimensional digital data sets with comparable resolution to light microscopy. Although it has traditionally been used for non-destructive testing in engineering, aerospace industries and in preclinical animal studies, new applications are rapidly becoming available in the clinical setting including post-mortem fetal imaging and pathological specimen analysis. Printing three-dimensional models from imaging data sets for educational purposes is well established in the medical literature, but typically using low resolution (0.7 mm voxel size) data acquired from CT or MR examinations. With higher resolution imaging (voxel sizes below 1 micron, <0.001 mm) at micro-CT, smaller structures can be better characterised, and data sets post-processed to create accurate anatomical models for review and handling. In this review, we provide examples of how three-dimensional printing of micro-CT imaged specimens can provide insight into craniofacial surgical applications, developmental cardiac anatomy, placental imaging, archaeological remains and high-resolution bone imaging. We conclude with other potential future usages of this emerging technique.
机译:Microfocus CT(micro-CT)是一种成像方法,可提供具有与光学显微镜相当的分辨率的三维数字数据集。尽管传统上已将其用于工程,航空航天工业和临床前动物研究中的无损检测,但在临床环境中包括死后胎儿成像和病理标本分析的新应用正在迅速可用。在医学文献中已经很好地建立了从影像数据集打印三维模型以进行教育的目的,但通常使用从CT或MR检查中获得的低分辨率(0.7毫米体素尺寸)数据。通过在微CT上进行更高分辨率的成像(体素尺寸小于1微米,<0.001毫米),可以更好地表征较小的结构,并对数据集进行后处理以创建准确的解剖模型以进行检查和处理。在这篇综述中,我们提供了三维CT成像标本的三维打印如何提供有关颅面外科手术应用,发育性心脏解剖,胎盘成像,考古遗体和高分辨率骨骼成像的见解的示例。我们以该新兴技术的其他未来潜在用途作为总结。

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