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A general model to calculate the spin-lattice (T1) relaxation time of blood accounting for haematocrit oxygen saturation and magnetic field strength

机译:计算血细胞比容氧饱和度和磁场强度的通用模型用于计算血液的自旋晶格(T1)弛豫时间

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摘要

Many MRI techniques require prior knowledge of the T1-relaxation time of blood (T1bl). An assumed/fixed value is often used; however, T1bl is sensitive to magnetic field (B0), haematocrit (Hct), and oxygen saturation (Y). We aimed to combine data from previous in vitro measurements into a mathematical model, to estimate T1bl as a function of B0, Hct, and Y. The model was shown to predict T1bl from in vivo studies with a good accuracy (±87 ms). This model allows for improved estimation of T1bl between 1.5–7.0 T while accounting for variations in Hct and Y, leading to improved accuracy of MRI-derived perfusion measurements.
机译:许多MRI技术需要对血液的T1松弛时间(T1b1)有先验知识。通常使用假定/固定值;然而,T1b1对磁场(B0),血细胞比容(Hct)和氧饱和度(Y)敏感。我们旨在将先前体外测量中的数据合并到一个数学模型中,以估计T1b1作为B0,Hct和Y的函数。该模型显示出可从体内研究中预测T1b1并具有良好的准确度(±87 ms)。该模型可以改进在1.5–7.0 T之间的 T 1 bl 估计,同时考虑到 Hct Y ,从而提高了MRI灌注测量的准确性。

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