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首页> 外文期刊>European radiology >T2 and T2* measurements of fetal brain oxygenation during hypoxia with MRI at 3T: correlation with fetal arterial blood oxygen saturation.
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T2 and T2* measurements of fetal brain oxygenation during hypoxia with MRI at 3T: correlation with fetal arterial blood oxygen saturation.

机译:在3T MRI下低氧时胎儿脑氧合的T2和T2 *测量:与胎儿动脉血氧饱和度的相关性。

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The purpose of this prospective study was to determine the oxygen saturation of blood in the fetal brain based on T2 and T2* measurements in a fetal sheep model. Five sheep fetuses were investigated during normoxia and hypoxia by 3T MRI. Multi-echo gradient-echo and turbo-spin-echo sequences were performed on the fetal brain. MR-determined oxygen saturation (MR-sO(2)) of blood in the fetal brain was calculated based on T2 and T2* values. Fetal arterial blood oxygen saturation (blood-sO(2)) was measured during the two experimental phases. The slope of MR-sO(2) as a function of blood-sO(2) was estimated and tested for compatibility using the one-sample t-test. During normoxia, mean values for carotid blood oxygen saturation were 67%, 83 ms for T2*, 202 ms for T2 and 96% for MR-sO(2). During hypoxia, arterial blood oxygen saturation, T2* and calculated MR-sO(2) decreased to 22%, 64 ms, and 68% respectively. The one-sample t-test revealed the slope to be significantly different from 0 (T = 5.023, df = 4, P = 0.007). It is feasible to perform quantitative T2 and T2* measurements in the fetal brain. MR-sO(2) and fetal arterial blood oxygen saturation correlated significantly. However, based on these data a reliable quantification of fetal brain tissue oxygenation is not possible.
机译:这项前瞻性研究的目的是根据胎羊模型中的T2和T2 *测量值确定胎儿大脑中血液的氧饱和度。通过3T MRI对五只绵羊胎儿在常氧和低氧期间进行了研究。在胎儿大脑上执行了多回波梯度回波和turbo自旋回波序列。根据T2和T2 *值计算胎儿脑部血液的MR测定氧饱和度(MR-sO(2))。在两个实验阶段中测量了胎儿动脉血氧饱和度(血液-sO(2))。 MR-sO(2)的斜率作为血液-sO(2)的函数进行了估计,并使用一样本t检验测试了兼容性。在常氧期间,颈动脉​​血氧饱和度的平均值分别为67%,T2 *为83 ms,T2为202 ms和MR-sO(2)为96%。在缺氧期间,动脉血氧饱和度,T2 *和计算得出的MR-sO(2)分别降至22%,64 ms和68%。一次样本t检验显示斜率明显不同于0(T = 5.023,df = 4,P = 0.007)。在胎儿脑中进行定量的T2和T2 *测量是可行的。 MR-sO(2)与胎儿动脉血氧饱和度显着相关。然而,基于这些数据,不可能对胎儿脑组织的氧合进行可靠的定量。

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