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Correcting B 0 Field Distortions in MRI Caused by Stainless Steel Orthodontic Appliances at 1.5 T Using Permanent Magnets – A Head Phantom Study

机译:使用永磁体矫正1.5 T时不锈钢正畸设备在MRI中引起的B 0场畸变–头部幻影研究

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Susceptibility artifacts caused by stainless steel orthodontic appliances (braces) pose significant challenges in clinical brain MRI examinations. We introduced field correction device (FCD) utilizing permanent magnets to cancel the induced B0 inhomogeneity and mitigate geometric distortions in MRI. We evaluated a prototype FCD using a 3D-printed head phantom in this proof of concept study. The phantom was compartmented into anterior frontal lobe, temporal lobe, fronto-parieto-occipital lobe, basal ganglia and thalami, brain stem, and cerebellum and had built-in orthogonal gridlines to facilitate the quantification of geometric distortions and volume obliterations. Stainless steel braces were mounted on dental models of three different sizes with total induced magnetic moment 0.15 to 0.17?A·m2. With braces B0 standard deviation (SD) ranged from 2.8 to 3.7 ppm in the temporal and anterior frontal lobes vs. 0.2 to 0.3 ppm without braces. The volume of brain regions in diffusion weighted imaging was obliterated by 32–38% with braces vs. 0% without braces in the cerebellum. With the FCD the SD of B0 ranged from 0.3 to 1.2 ppm, and obliterated volume ranged from 0 to 6% in the corresponding brain areas. These results showed that FCD can effectively decrease susceptibility artifacts from orthodontic appliances.
机译:不锈钢正畸矫治器(支架)引起的易感伪影在临床脑部MRI检查中提出了重大挑战。我们引入了利用永磁体的场校正设备(FCD),以消除感应的B0不均匀性并减轻MRI中的几何变形。在此概念验证研究中,我们使用3D打印的头部模型评估了FCD原型。幻影分为前额叶,颞叶,额顶叶枕叶,基底神经节和丘脑,脑干和小脑,并具有内置的正交网格线,以方便量化几何畸变和闭塞体积。将不锈钢牙具安装在三种不同尺寸的牙科模型上,总感应磁矩为0.15至0.17?A·m2。使用牙套时,颞叶和前额叶的B0标准偏差(SD)范围为2.8至3.7 ppm,不使用牙套的标准偏差为0.2至0.3 ppm。带有括号的弥散加权成像中大脑区域的体积被消灭了32–38%,而小脑中没有括号的则被消灭了0%。使用FCD时,在相应的大脑区域中,B0的SD范围为0.3至1.2 ppm,闭塞体积的范围为0至6%。这些结果表明,FCD可以有效地减少来自正畸矫治器的敏感性伪像。

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