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儿科应用中结合磁共振成像的3D打印技术。

3D printing with MRI in pediatric applications.

作者信息

Parthasarathy Jayanthi, Krishnamurthy Ramkumar, Ostendorf Adam, Shinoka Toshiharu, Krishnamurthy Rajesh

机构信息

The Department of Radiology, Nationwide Children's Hospital, Columbus, Ohio, USA.

Department of Neurology Nationwide Children's Hospital, Columbus, Ohio, USA.

出版信息

J Magn Reson Imaging. 2020 Jun;51(6):1641-1658. doi: 10.1002/jmri.26870. Epub 2019 Jul 22.

Abstract

3D printing (3DP) applications for clinical evaluation, preoperative planning, patient and trainee education, and simulation has increased in the past decade. Most of the applications are found in cardiovascular, head and neck, orthopedic, neurological, urological, and oncological surgical cases. This review has three parts. The first part discusses the technical pathway to realizing a physical model, 3DP considerations in pediatric MRI image acquisition, data and resolution requirements, and related structural segmentation and postprocessing steps needed to generalize both virtual and physical models. Standard practices and processing software used in these processes will be assessed. The second part discusses complementary examples in pediatric applications, including cases from cardiology, neuroradiology, neurology, and neurosurgery, head and neck, orthopedics, pelvic and urological applications, oncological applications, and fetal imaging. The third part explores other 3D printing applications and considerations such as using 3DP to develop tissue-specific phantoms and devices for testing in the MR environment, to educate patients and their families, to train clinicians and students, and facility requirements for building a 3DP program. Level of Evidence: 5 Technical Efficacy: Stage 5 J. Magn. Reson. Imaging 2020;51:1641-1658.

摘要

在过去十年中,3D打印(3DP)在临床评估、术前规划、患者及实习生教育以及模拟方面的应用有所增加。大多数应用见于心血管、头颈、骨科、神经、泌尿和肿瘤外科病例。本综述分为三个部分。第一部分讨论实现物理模型的技术途径、儿科MRI图像采集的3DP注意事项、数据和分辨率要求,以及生成虚拟模型和物理模型所需的相关结构分割和后处理步骤。将评估这些过程中使用的标准做法和处理软件。第二部分讨论儿科应用中的补充实例,包括来自心脏病学、神经放射学、神经病学和神经外科、头颈、骨科、盆腔和泌尿应用、肿瘤应用以及胎儿成像的病例。第三部分探讨其他3D打印应用和注意事项,例如使用3DP开发组织特异性体模和设备以在MR环境中进行测试、教育患者及其家属、培训临床医生和学生,以及建立3DP项目的设施要求。证据水平:5 技术效能:5期 《磁共振成像杂志》2020年;51:1641 - 1658 。

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