首页> 外文会议>Progress in Electromagnetics Research Symposium - Fall >Extraction of electrical properties of strokes from magnetic resonance scans — Testing on simplified head phantoms
【24h】

Extraction of electrical properties of strokes from magnetic resonance scans — Testing on simplified head phantoms

机译:从磁共振扫描中提取笔触的电学特性—在简化的头部幻像上进行测试

获取原文

摘要

Several studies have reported considerable differences in dielectric properties between healthy and pathological tissues. In addition, in the area of electromagnetic field applications in medicine, discussions about the correctness of dielectric properties of biological tissues measured ex vivo (the most common method of measurement), for example due to lower blood content, are taking place. By using the inherent electromagnetic working principle of magnetic resonance (MR) systems, changes in wave propagation can be used to extract values of dielectric properties of target tissues from MR images. This method thus represents a method for noninvasive measurement of dielectric properties of biological tissues in Vivo. The results might be used for detection and classification of illness. It has been show in literature that both magnitude and phase of the MR RF waves can be determined using standard MR imaging sequences. By using the resulting magnitude and phase of RF waves dielectric properties can be determined by simply using the Helmholtz equation. In this study we confirm such reports through numerical simulations using high-resolution anatomical head model and a model of bird-cage coil. Furthermore, a simplified head phantom mimicking dielectric properties of strokes and brain tissues was designed and manufactured and information from real MR scans was processed. As it will be shown in this work, this process works well for data obtained via numerical simulations but it is not as straightforward, for the images coming from the MR system. There, additional processing in order to compensate for the presence of noise and de-phasing is crucial.
机译:几项研究报告了健康组织和病理组织之间介电特性的显着差异。另外,在医学中的电磁场应用领域中,例如由于血液含量较低,正在讨论离体测量的生物组织介电特性的正确性(最常见的测量方法)。通过使用磁共振(MR)系统固有的电磁工作原理,可以使用波传播的变化来从MR图像中提取目标组织的介电特性值。因此,该方法代表了一种用于体内无创测量生物组织介电特性的方法。结果可用于疾病的检测和分类。在文献中已经表明,可以使用标准的MR成像序列来确定MR RF波的幅度和相位。通过使用由此产生的RF波的幅度和相位,可以简单地使用Helmholtz方程确定介电性能。在这项研究中,我们通过使用高分辨率解剖头模型和鸟笼线圈模型的数值模拟来确认此类报告。此外,设计并制造了模仿中风和脑组织介电特性的简化头部模型,并处理了来自真实MR扫描的信息。就像在这项工作中将显示的那样,该过程对于通过数值模拟获得的数据效果很好,但是对于来自MR系统的图像却不是那么简单。在那里,为了补偿噪声和去相位而进行的附加处理至关重要。

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