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Patient-specific simulations and measurements of the magneto-hemodynamic effect in human primary vessels

机译:针对特定患者的模拟和测量人体主血管中的磁血流动力学效应

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This paper investigates the main characteristics of the magneto-hemodynamic (MHD) response for application as a biomarker of vascular blood flow. The induced surface potential changes of a volunteer exposed to a 3T static B0 field of a magnetic resonance imaging (MRI) magnet were measured over time at multiple locations by an electrocardiogram device and compared to simulation results. The flow simulations were based on boundary conditions derived from MRI flow measurements restricted to the aorta and vena cava. A dedicated and validated low-frequency electromagnetic solver was applied to determine the induced temporal surface potential change from the obtained 4D flow distribution using a detailed whole-body model of the volunteer. The simulated MHD signal agreed with major characteristics of the measured signal (temporal location of main peak, magnitude, variation across chest and along torso) except in the vicinity of the heart. The MHD signal is mostly influenced by the aorta; however, more vessels and better boundary conditions are needed to analyze the finer details of the response. The results show that the MHD signal is strongly position dependent with highly variable but reproducibly measurable distinguished characteristics. Additional investigations are necessary before determining whether the MHD effect is a reliable reference for location-specific information on blood flow.
机译:本文研究了磁血流动力学(MHD)反应的主要特征,将其用作血管血流的生物标志物。通过心电图设备在多个位置随时间测量了暴露于磁共振成像(MRI)磁体的3T静态B0场的志愿者的感应表面电势变化,并将其与模拟结果进行了比较。流动模拟基于边界条件,该边界条件源自限于主动脉和腔静脉的MRI流动测量结果。应用专用且经过验证的低频电磁求解器,使用志愿者的详细全身模型,从获得的4D流量分布确定诱导的瞬时表面电势变化。除了心脏附近,模拟的MHD信号与测量信号的主要特征(主峰的时间位置,幅度,胸部和躯干的变化)一致。 MHD信号主要受主动脉影响。但是,需要更多的船只和更好的边界条件来分析响应的更好细节。结果表明,MHD信号强烈依赖于位置,具有高度可变但可测量的显着特征。在确定MHD效应是否是针对血流的特定位置信息的可靠参考之前,需要进行其他研究。

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