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首页> 外文期刊>Physiological measurement >The effect of brain hematoma location on volumetric inductive phase shift spectroscopy of the brain with circular and magnetron sensor coils: a numerical simulation study
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The effect of brain hematoma location on volumetric inductive phase shift spectroscopy of the brain with circular and magnetron sensor coils: a numerical simulation study

机译:脑血肿位置对圆形和磁控传感器线圈对大脑的体积感应相移谱的影响:数值模拟研究

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This numerical simulation study addressed the effects of the location of a discrete brain hematoma on the volumetric inductive phase shift of the brain measured with an induction circular sensor coil and an induction magnetron sensor coil. The theoretical study simulates the brain cavity as a circular sphere transversely centered with respect to the circular and magnetron sensor coils. As a case study for the effects of hematoma location, we employed similar size simulated spherical hematomas placed at three different positions from the center of the brain outward. A three-dimensional finite element analysis of the field equations in the frequency range from 100 kHz to 100 MHz revealed a substantial effect of hematoma location on the ability of both the circular and magnetron sensors to detect the hematomas. In particular it was found that there are frequencies, which may be related to resonance, at which the occurrence of the hematomas has no effect on the volumetric inductive phase shift of the brain. Furthermore it was found that the relative sensitivity of circular and magnetron sensor coils with respect to the occurrence of hematoma varies with the location of the hematoma.
机译:这项数值模拟研究解决了离散脑血肿的位置对使用感应圆形传感器线圈和感应磁控传感器线圈测量的大脑体积感应相移的影响。理论研究将脑腔模拟为相对于圆形和磁控管传感器线圈横向居中的圆形球体。作为对血肿位置影响的案例研究,我们采用了类似大小的模拟球形血肿,其位置从大脑中心向外三个不同的位置。在100 kHz至100 MHz频率范围内对磁场方程进行三维有限元分析,发现血肿位置对圆形和磁控管传感器检测血肿的能力有重大影响。特别地,发现存在可能与共振有关的频率,在该频率下血肿的发生对大脑的体积感应相移没有影响。此外,发现圆形和磁控传感器线圈相对于血肿的发生的相对灵敏度随血肿的位置而变化。

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