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一种用于评估 MRI 几何变形的 3D 打印模型。

A 3D printed phantom to assess MRI geometric distortion.

机构信息

Department of Radiation Oncology, Princess Alexandra Hospital, Woolloongabba, Queensland, 4102, Australia.

Science and Engineering Faculty, Queensland University of Technology, Brisbane, Queensland, 4000, Australia.

出版信息

Biomed Phys Eng Express. 2021 Mar 15;7(3). doi: 10.1088/2057-1976/abeb7e.

Abstract

Geometric distortions in magnetic resonance can introduce significant uncertainties into applications such as radiotherapy treatment planning and need to be assessed as part of a comprehensive quality assurance program. We report the design, fabrication, and imaging of a custom 3D printed unibody MR distortion phantom along with quantitative image analysis.: The internal cavity of the phantom is an orthogonal three-dimensional planar lattice, composed of 3 mm diameter rods spaced equidistantly at a 20 mm centre-centre offset repeating along the X, Y, and Z axes. The phantom featured an overall length of 308.5 mm, a width of 246 mm, and a height of 264 mm with lines on the external surface for phantom positioning matched to external lasers. The MR phantom was 3D printed in Nylon-12 using an advancement on traditional selective laser sintering (SLS) (HP Jet Fusion 3D-4200 machine). The phantom was scanned on a Toshiba Aquilion CT scanner to check the integrity of the 3D print and correct for any resultant issues. The phantom was then filled with NiSOsolution and scanned on a 3T PET-MR Siemens scanner for selected T1 and T2 sequences, from which distortion vectors were generated and analysed using in-house software written in Python.: All deviations of the node positions from the print design were less than 1 mm, with an average displacement of 0.228 mm. The majority of the deviations were smaller than the 0.692 mm pixel size for this dataset.: A customised 3D printed MRI-phantom was successfully printed and tested for assessing geometric distortion on MRI scanners. 3D printed phantoms can be considered for clinics wishing to assess geometric distortions under specific conditions, but require resources for design, fabrication, commissioning, and verification.

摘要

磁共振中的几何变形会给放射治疗计划等应用带来显著的不确定性,因此需要作为全面质量保证计划的一部分进行评估。我们报告了一种定制的 3D 打印一体式磁共振失真体模的设计、制造和成像,以及定量图像分析:体模的内部空腔是一个正交的三维平面晶格,由直径为 3 毫米的棒组成,它们以 20 毫米的中心-中心间距等距分布,沿 X、Y 和 Z 轴重复。该体模总长度为 308.5 毫米,宽度为 246 毫米,高度为 264 毫米,外部表面有用于与外部激光对准的线。磁共振体模采用传统选择性激光烧结(SLS)的改进方法(HP Jet Fusion 3D-4200 机器)在尼龙-12 中 3D 打印。体模在东芝 Aquilion CT 扫描仪上进行扫描,以检查 3D 打印的完整性并纠正任何由此产生的问题。然后,将体模充满 NiSOsolution,并在 3T PET-MR 西门子扫描仪上对选定的 T1 和 T2 序列进行扫描,从这些序列中生成失真向量,并使用我们用 Python 编写的内部软件进行分析。:节点位置与打印设计的所有偏差均小于 1 毫米,平均位移为 0.228 毫米。大多数偏差都小于该数据集的 0.692 毫米像素大小。成功打印并测试了定制的 3D 打印 MRI 体模,用于评估 MRI 扫描仪上的几何变形。希望在特定条件下评估几何变形的临床医生可以考虑使用 3D 打印体模,但需要设计、制造、调试和验证方面的资源。

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