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区域可重复性的校准血氧水平依赖功能磁共振成像:对认知和可塑性研究的启示。

Regional reproducibility of calibrated BOLD functional MRI: implications for the study of cognition and plasticity.

机构信息

Max-Plank Institute for Human Cognitive and Brain Sciences, Leipzig, Germany; Monash Biomedical Imaging, Monash University, Melbourne, Australia.

Max-Plank Institute for Human Cognitive and Brain Sciences, Leipzig, Germany.

出版信息

Neuroimage. 2014 Nov 1;101:8-20. doi: 10.1016/j.neuroimage.2014.06.072. Epub 2014 Jul 5.

Abstract

Calibrated BOLD fMRI is a promising alternative to the classic BOLD contrast due to its reduced venous sensitivity and greater physiological specificity. The delayed adoption of this technique for cognitive studies may stem partly from a lack of information on the reproducibility of these measures in the context of cognitive tasks. In this study we have explored the applicability and reproducibility of a state-of-the-art calibrated BOLD technique using a complex functional task at 7 tesla. Reproducibility measures of BOLD, CBF, CMRO2 flow-metabolism coupling n and the calibration parameter M were compared and interpreted for three ROIs. We found an averaged intra-subject variation of CMRO2 of 8% across runs and 33% across days. BOLD (46% across runs, 36% across days), CBF (33% across runs, 46% across days) and M (41% across days) showed significantly higher intra-subject variability. Inter-subject variability was found to be high for all quantities, though CMRO2 was the most consistent across brain regions. The results of this study provide evidence that calibrated BOLD may be a viable alternative for longitudinal and cognitive MRI studies.

摘要

经校准的 BOLD fMRI 是经典 BOLD 对比的一种很有前途的替代方法,因为它的静脉敏感性降低,生理特异性更高。由于对认知任务中这些测量的可重复性缺乏信息,这种技术在认知研究中的延迟采用可能部分源于此。在这项研究中,我们使用 7T 下的复杂功能任务探索了最先进的经校准的 BOLD 技术的适用性和可重复性。比较和解释了三个 ROI 的 BOLD、CBF、CMRO2 流量-代谢偶联 n 和校准参数 M 的可重复性测量值。我们发现,在整个运行和整个测试日中,CMRO2 的平均个体内变化分别为 8%和 33%。BOLD(运行中为 46%,测试日中为 36%)、CBF(运行中为 33%,测试日中为 46%)和 M(测试日中为 41%)显示出明显更高的个体内变异性。所有数量的个体间变异性都很高,尽管 CMRO2 在脑区之间最为一致。这项研究的结果提供了证据,表明经校准的 BOLD 可能是纵向和认知 MRI 研究的可行替代方法。

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