首页> 外文会议>IEEE Signal Processing in Medicine and Biology Symposium >Detecting in vivo changes of electrical properties of Cerebral Spinal Fluid using microwave signals from small coil antennas - numerical simulation
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Detecting in vivo changes of electrical properties of Cerebral Spinal Fluid using microwave signals from small coil antennas - numerical simulation

机译:使用小线圈天线的微波信号检测脑脊髓液体电性能的体内变化 - 数值模拟

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Dielectric properties of Cerebral Spinal Fluid (CSF) at microwave frequencies correlate with a higher level of glucose or protein observed at certain diseases, including early stages of Alzheimer's disease. In this study, a simulation of in vivo monitoring dielectric properties of Cerebral Spinal Fluid (CSF) using small antennas precisely positioned around the human head is made. We use a realistic mesh model of the head and head organs obtained by fine segmentation of the Visible Human Project® data. An accurate source model with coincident phase centers is employed in the underlying Finite Difference Time-Domain (FDTD) algorithm. Simulation result strongly depends on the type and positioning of small antennas around the head, and on the mechanical accuracy. Once these factors are properly optimized, the changes in the relative dielectric constant on the order of 10–15% may be recorded using the phase shift of a second received pulse.
机译:微波频率下脑脊髓液(CSF)的介电学性质与在某些疾病中观察到的较高水平的葡萄糖或蛋白质,包括Alzheimer疾病的早期阶段。 在该研究中,制造使用精确定位在人头周围的小天线的脑脊髓液(CSF)的体内监测介电性质的模拟。 我们使用由可见人体项目的精细分割而获得的头部和头部器官的现实网格模型。 数据。 基础有限差分时间域(FDTD)算法采用具有重合阶段中心的精确源模型。 仿真结果强烈取决于头部周围的小天线的类型和定位,以及机械精度。 一旦正确优化了这些因素,可以使用第二接收脉冲的相移记录10-15%的相对介电常数的相对介电常数的变化。

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