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Excitation Strategy Analysis of Magnetic Induction Tomography for Intracranial Hemorrhage Detection

机译:磁感应断层扫描在颅内出血检测中的激励策略分析

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Magnetic induction tomography (MIT) is a promising technique for intracranial hemorrhage detection due to its non-radioactive, low cost, contactless features. Under different excitation strategies, an MIT sensor array can produce different magnetic field and sensitivity distribution. A multi-coil excitation strategy is proposed and the effect of different excitation strategies on hemorrhage imaging is investigated. The relationship between the excitation frequency, conductivity and response signal under multi-coil excitation was analyzed based on the equivalent circuit. The calculation formula of sensitivity matrix under multi-coil excitation was derived. In the simulation, a planar local sensor array and a 3D anatomical head model were established. Two excitation strategies: single excitation strategy and adjacent reverse excitation strategy were analyzed and compared. The results indicate that the sensitivity distribution under the adjacent reverse excitation is more concentrated compared with the single excitation strategy. It can effectively suppress the influence of the background signals from other tissues and has the ability to detect the hemorrhage with smaller volume. The analysis and optimization of the excitation strategy may provide a solution for further improving the spatial resolution in intracranial hemorrhage detection and promotes the development of MIT in biomedical imaging.
机译:磁感应断层扫描(MIT)由于其非放射性,低成本,非接触式功能而成为颅内出血检测的有前途的技术。在不同的激励策略下,MIT传感器阵列可以产生不同的磁场和灵敏度分布。提出了一种多线圈激励策略,研究了不同激励策略对出血成像的影响。基于等效电路,分析了多线圈激励下激励频率,电导率和响应信号之间的关系。推导了多线圈激励下灵敏度矩阵的计算公式。在仿真中,建立了平面局部传感器阵列和3D解剖头部模型。分析并比较了两种激励策略:单激励策略和相邻反向激励策略。结果表明,与单个激励策略相比,相邻反向激励下的灵敏度分布更加集中。它可以有效地抑制来自其他组织的背景信号的影响,并具有以较小的体积检测出血的能力。激发策略的分析和优化可为进一步提高颅内出血检测的空间分辨率提供解决方案,并促进生物医学成像中MIT的发展。

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