Kodama Tomonobu, Nakai Ryusuke, Goto Kenji, Shima Kunihiro, Iwata Hiroo
Department of Reparative Materials, Institute for Frontier Medical Sciences, Kyoto University, Japan; Department of Neurosurgery, Jikei University School of Medicine, Japan.
Department of Reparative Materials, Institute for Frontier Medical Sciences, Kyoto University, Japan; Department of Biomedical Sciences, College of Life and Health Sciences, Chubu University, Japan.
Magn Reson Imaging. 2017 Dec;44:38-45. doi: 10.1016/j.mri.2017.07.006. Epub 2017 Jul 9.
When magnetic resonance imaging (MRI) is performed on patients carrying metallic implants, artifacts can disturb the images around the implants, often making it difficult to interpret them appropriately. However, metallic materials are and will be indispensable as raw materials for medical devices because of their electric conductivity, visibility under X-ray fluoroscopy, and other favorable features. What is now desired is to develop a metallic material which causes no artifacts during MRI.
In the present study, we prepared a single-phase and homogeneous Au-Pt alloys (Au; diamagnetic metal, and Pt; paramagnetic metal) by the processing of thermal treatment. Volume magnetic susceptibility was measured with a SQUID Flux Meter and MRI artifact was evaluated using a 1.5-T scanner.
After final thermal treatment, an entirely recrystallized homogeneous organization was noted. The Au-35Pt alloy was shown to have a volume magnetic susceptibility of -8.8ppm, causing almost free from artifacts during MRI.
We thus prepared an Au-35Pt alloy which had a magnetic susceptibility very close to that of living tissue and caused much fewer artifacts during MRI. It is promising as a material for spinal cages, intracranial electrodes, cerebral aneurysm embolization coils, markers for MRI and so on.
对携带金属植入物的患者进行磁共振成像(MRI)检查时,伪影会干扰植入物周围的图像,常常导致难以对其进行恰当解读。然而,由于金属材料具有导电性、在X射线荧光透视下的可见性及其他有利特性,它们过去是、将来也仍将是医疗设备不可或缺的原材料。目前所期望的是研发一种在MRI检查期间不会产生伪影的金属材料。
在本研究中,我们通过热处理工艺制备了单相且均匀的金铂合金(金;抗磁性金属,铂;顺磁性金属)。使用超导量子干涉仪磁通计测量体积磁化率,并使用1.5-T扫描仪评估MRI伪影。
最终热处理后,观察到完全再结晶的均匀组织。Au-35Pt合金的体积磁化率显示为-8.8ppm,在MRI检查期间几乎不产生伪影。
因此,我们制备了一种Au-35Pt合金,其磁化率与活体组织非常接近,在MRI检查期间产生的伪影要少得多。它有望成为脊柱融合器、颅内电极、脑动脉瘤栓塞线圈、MRI标记物等的材料。