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Assessing the repeatability of absolute CMRO2 OEF and haemodynamic measurements from calibrated fMRI

机译:通过校准的功能磁共振成像评估绝对CMRO2OEF和血流动力学测量的可重复性

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摘要

As energy metabolism in the brain is largely oxidative, the measurement of cerebral metabolic rate of oxygen consumption (CMRO2) is a desirable biomarker for quantifying brain activity and tissue viability. Currently, PET techniques based on oxygen isotopes are the gold standard for obtaining whole brain CMRO2 maps. Among MRI techniques that have been developed as an alternative are dual calibrated fMRI (dcFMRI) methods, which exploit simultaneous measurements of BOLD and ASL signals during a hypercapnic-hyperoxic experiment to modulate brain blood flow and oxygenation.In this study we quantified the repeatability of a dcFMRI approach developed in our lab, evaluating its limits and informing its application in studies aimed at characterising the metabolic state of human brain tissue over time. Our analysis focussed on the estimates of oxygen extraction fraction (OEF), cerebral blood flow (CBF), CBF-related cerebrovascular reactivity (CVR) and CMRO2 based on a forward model that describes analytically the acquired dual echo GRE signal.Indices of within- and between-session repeatability are calculated from two different datasets both at a bulk grey matter and at a voxel-wise resolution and finally compared with similar indices obtained from previous MRI and PET measurements. Within- and between-session values of intra-subject coefficient of variation (CVintra) calculated from bulk grey matter estimates 6.7 ± 6.6% (mean ± std.) and 10.5 ± 9.7% for OEF, 6.9 ± 6% and 5.5 ± 4.7% for CBF, 12 ± 9.7% and 12.3 ± 10% for CMRO2. Coefficient of variation (CV) and intraclass correlation coefficient (ICC) maps showed the spatial distribution of the repeatability metrics, informing on the feasibility limits of the method.In conclusion, results show an overall consistency of the estimated physiological parameters with literature reports and a satisfactory level of repeatability considering the higher spatial sensitivity compared to other MRI methods, with varied performance depending on the specific parameter under analysis, on the spatial resolution considered and on the study design.
机译:由于大脑中的能量代谢主要是氧化性的,因此测量大脑氧耗代谢率(CMRO2)是量化大脑活动和组织活力的理想生物标记。当前,基于氧同位素的PET技术是获得全脑CMRO2图的金标准。在替代的MRI技术中,有双重校准的fMRI(dcFMRI)方法,该方法在高碳酸血症-高氧实验中利用BOLD和ASL信号的同时测量来调节脑血流量和氧合。在我们的实验室中开发的dcFMRI方法,评估了其局限性,并将其应用于旨在表征人脑组织随时间变化的代谢状态的研究中。我们的分析集中在基于正向模型的氧提取分数(OEF),脑血流量(CBF),CBF相关脑血管反应性(CVR)和CMRO2的估计上,该模型以解析方式描述了所获取的双回声GRE信号。会话之间的重复性和会话之间的重复性是从两个不同的数据集(分别以体灰质和体素分辨率)计算的,并最终与从先前的MRI和PET测量获得的相似指标进行比较。根据大块灰质估计值计算的受试者内和受试者间变异系数(CVintra)值分别为6.7%±6.6%(平均值±标准差)和10.5%±9.7%(OEF,6.9%±6%和5.5%±4.7%) CBF为12%±9.7%,CMRO2为12.3±10%。变异系数(CV)和类内相关系数(ICC)图显示了可重复性指标的空间分布,并告知了该方法的可行性极限。考虑到与其他MRI方法相比更高的空间灵敏度,且具有令人满意的可重复性水平,其性能取决于所分析的特定参数,所考虑的空间分辨率和研究设计而变化。

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