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用于磁共振成像中可调图像对比的增材制造实体对象结构。

Additively manufactured, solid object structures for adjustable image contrast in Magnetic Resonance Imaging.

机构信息

QIMP Team, Centre for Medical Physics and Biomedical Engineering, Medical University of Vienna, Vienna, Austria.

Centre for Medical Physics and Biomedical Engineering, Medical University of Vienna, Vienna, Austria.

出版信息

Z Med Phys. 2022 Nov;32(4):466-476. doi: 10.1016/j.zemedi.2022.03.003. Epub 2022 May 18.

Abstract

The choice of materials challenges the development of Magnetic Resonance Imaging (MRI) phantoms and, to date, is mainly limited to water-filled compartments or gel-based components. Recently, solid materials have been introduced through additive manufacturing (AM) to mimic complex geometrical structures. Nonetheless, no such manufactured solid materials are available with controllable MRI contrast to mimic organ substructures or lesion heterogeneities. Here, we present a novel AM design that allows MRI contrast manipulation by varying the partial volume contribution to a ROI/voxel of MRI-visible material within an imaging object. Two sets of 11 cubes and three replicates of a spherical tumour model were designed and printed using AM. Most samples presented varying MRI-contrast in standard MRI sequences, based mainly on spin density and partial volume signal variation. A smooth and continuous MRI-contrast gradient could be generated in a single-compartment tumour model. This concept supports the development of more complex MRI phantoms that mimic the appearance of heterogeneous tumour tissues.

摘要

材料的选择对磁共振成像(MRI)模型的发展提出了挑战,迄今为止,主要局限于充满水的腔室或基于凝胶的组件。最近,通过增材制造(AM)引入了固体材料来模拟复杂的几何结构。尽管如此,目前还没有可用于模拟器官亚结构或病变异质性的具有可控 MRI 对比度的此类制造固体材料。在这里,我们提出了一种新的 AM 设计,通过改变成像物体中 MRI 可见材料的 ROI/体素的部分体积对其的贡献,从而实现 MRI 对比的操纵。使用 AM 设计并打印了两组 11 个立方体和三个球形肿瘤模型的复制品。大多数样品在标准 MRI 序列中呈现出不同的 MRI 对比,主要基于自旋密度和部分体积信号变化。在单腔肿瘤模型中可以产生平滑且连续的 MRI 对比梯度。该概念支持开发更复杂的 MRI 模型,以模拟异质肿瘤组织的外观。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea41/9948875/8e32cbd98a19/gr1.jpg

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