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首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Phase contrast mapping MRI measurements of global cerebral blood flow across different perfusion states - A direct comparison with O-15-H2O positron emission tomography using a hybrid PET/MR system
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Phase contrast mapping MRI measurements of global cerebral blood flow across different perfusion states - A direct comparison with O-15-H2O positron emission tomography using a hybrid PET/MR system

机译:相对映射MRI跨不同灌注状态的全局脑血流动的MRI测量 - 使用杂交宠物/ MR系统与O-15-H2O正电子发射断层扫描的直接比较

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摘要

Phase-contrast mapping (PCM) magnetic resonance imaging (MRI) provides easy-access non-invasive quantification of global cerebral blood flow (gCBF) but its accuracy in altered perfusion states is not established. We aimed to compare paired PCM MRI and O-15-H2O positron emission tomography (PET) measurements of gCBF in different perfusion states in a single scanning session. Duplicate combined gCBF PCM-MRI and O-15-H2O PET measurements were performed in the resting condition, during hyperventilation and after acetazolamide administration (post-ACZ) using a 3T hybrid PET/MR system. A total of 62 paired gCBF measurements were acquired in 14 healthy young male volunteers. Average gCBF in resting state measured by PCM-MRI and O-15-H2O PET were 58.5 +/- 10.7 and 38.6 +/- 5.7 mL/100 g/min, respectively, during hyperventilation 33 +/- 8.6 and 24.7 +/- 5.8 mL/100 g/min, respectively, and post-ACZ 89.6 +/- 27.1 and 57.3 +/- 9.6 mL/100 g/min, respectively. On average, gCBF measured by PCM-MRI was 49% higher compared to O-15-H2O PET. A strong correlation between the two methods across all states was observed (R-2 = 0.72, p < 0.001). Bland-Altman analysis suggested a perfusion dependent relative bias resulting in higher relative difference at higher CBF values. In conclusion, measurements of gCBF by PCM-MRI in healthy volunteers show a strong correlation with O-15-H2O PET, but are associated with a large and non-linear perfusion-dependent difference.
机译:相位对比度映射(PCM)磁共振成像(MRI)提供全局脑血流(GCBF)的易于接入的非侵入量化,但是其在改变的灌注状态下的精度是不建立的。我们的目标是在单个扫描会议中比较不同灌注状态的配对PCM MRI和O-15-H2O正电子发射断层扫描(PET)测量GCBF。在使用3T杂交PET / MR系统的过通化物和乙酰唑胺施用(后ACZ)期间,在静血交条件下进行重复组合GCBF PCM-MRI和O-15-H2O PET测量。在14个健康的年轻男性志愿者中获得了总共62个配对的GCBF测量。通过PCM-MRI和O-15-H2O PET测量的静息状态下的平均GCBF分别为58.5 +/- 10.7和38.6 +/- 5.7ml / 100g / min,分别在高过通路33 +/- 8.6和24.7 +/-分别为5.8mL / 100g / min,分别为ACZ 89.6 +/- 27.1和57.3 +/- 9.6ml / 100g / min。平均而言,与O-15-H2O PET相比,PCM-MRI测量的GCBF高出49%。观察到所有状态的两种方法之间的强烈相关性(R-2 = 0.72,P <0.001)。 Bland-Altman分析表明灌注依赖性相对偏差,从而在较高的CBF值下相对相对差异。总之,PCM-MRI在健康志愿者中测量GCBF与O-15-H2O PET的强烈相关,但与大而非线性灌注依赖性差异有关。

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