首页> 外文会议>Imaging Informatics for Healthcare, Research, and Applications >Local heating of metallic objects from switching magnetic gradients in MRI
【24h】

Local heating of metallic objects from switching magnetic gradients in MRI

机译:从MRI切换磁梯度的金属物体的局部加热

获取原文

摘要

Previously it has been shown that heat induced in metallic objects due to fast switching magnetic gradients can pose a possible danger not only for patients undergoing MRI procedures, but also to medical staff present. In this study, we investigate magnetic flux changes and the effects of local heating in metallic elements by eddy currents due to fast switching magnetic gradients at several specific positions with respect to the isocenter of the gradient coils. Experiments were performed in a 3 T preclinical scanner with a 30 cm bore. To probe the induced electro motive force (EMF), which results in induced eddy currents, small pickup coils were used at various locations in the scanner. To investigate heating, metallic cylinders (12.5 mm diameter, 12.6 mm height) were prepared with a pinhole to accommodate miniature fiber optic temperature sensors. A gradient echo axial imaging sequence was applied for 4 minutes after achieving thermal equilibrium with the magnet. Three different materials were used in this study: copper, aluminum, and Ti-6AL-4V, a titanium alloy commonly used in orthopedic implants. In these experiments, a direct dependence on position and gradient strength on the induced EMF was observed. As expected, the increase of temperature depended directly on distance and material composition. Heating can be a danger during imaging of patients with conductive implants that are placed away from the isocenter. Thus, our findings are vital to patient safety and comfort during MRI procedures.
机译:以前已经表明,由于快速切换磁梯级导致的金属物体中引起的热量可能对接受MRI程序的患者来说可能造成可能的危险,也可以对所呈现的医务人员提供危险。在该研究中,我们研究了磁通量变化和局部加热在金属元件中通过涡流的影响,因为在梯度线圈的isocenter处的若干特定位置处的快速切换磁梯度。在3T晶体扫描仪中进行实验,孔30厘米。为了探测诱导的电动动力(EMF),导致诱导涡流,在扫描仪中的各个位置使用小拾取线圈。为了研究加热,用针孔制备金属缸(12.5毫米,12.6毫米),以适应微型光纤温度传感器。梯度回波轴向成像序列在达到磁体的热平衡后4分钟施加4分钟。本研究中使用了三种不同的材料:铜,铝和Ti-6Al-4V,常用于整形外科植入物的钛合金。在这些实验中,观察到直接依赖于诱导的EMF上的位置和梯度强度。如预期的那样,温度的增加直接取决于距离和材料组合物。加热可能是在远离等中心的导电植入物的成像期间的危险。因此,在MRI程序期间,我们的研究结果对患者的安全性和舒适性至关重要。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号