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Dual-calibrated fMRI measurement of absolute cerebral metabolic rate of oxygen consumption and effective oxygen diffusivity

机译:双校准fMRI测量绝对的脑代谢氧消耗率和有效氧扩散率

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摘要

Dual-calibrated fMRI is a multi-parametric technique that allows for the quantification of the resting oxygen extraction fraction (OEF), the absolute rate of cerebral metabolic oxygen consumption (CMRO2), cerebral vascular reactivity (CVR) and baseline perfusion (CBF). It combines measurements of arterial spin labelling (ASL) and blood oxygenation level dependent (BOLD) signal changes during hypercapnic and hyperoxic gas challenges. Here we propose an extension to this methodology that permits the simultaneous quantification of the effective oxygen diffusivity of the capillary network (DC). The effective oxygen diffusivity has the scope to be an informative biomarker and useful adjunct to CMRO2, potentially providing a non-invasive metric of microvascular health, which is known to be disturbed in a range of neurological diseases. We demonstrate the new method in a cohort of healthy volunteers (n = 19) both at rest and during visual stimulation. The effective oxygen diffusivity was found to be highly correlated with CMRO2 during rest and activation, consistent with previous PET observations of a strong correlation between metabolic oxygen demand and effective diffusivity. The increase in effective diffusivity during functional activation was found to be consistent with previously reported increases in capillary blood volume, supporting the notion that measured oxygen diffusivity is sensitive to microvascular physiology.
机译:双重校准的功能磁共振成像是一项多参数技术,可用于定量测定静息氧提取分数(OEF),脑代谢氧消耗的绝对速率(CMRO2),脑血管反应性(CVR)和基线灌注(CBF)。它结合了在高碳酸血症和高氧血症气体挑战期间对动脉自旋标记(ASL)和血液氧合水平依赖性(BOLD)信号变化的测量。在这里,我们提议对该方法进行扩展,以允许同时量化毛细管网络(DC)的有效氧扩散率。有效的氧扩散性具有成为信息性生物标志物的范围,并且是CMRO2的有用辅助物,潜在地提供了微血管健康的非侵入性指标,已知该微血管健康状况会在一系列神经系统疾病中受到干扰。我们在静止和视觉刺激期间的一组健康志愿者(n = 19)中证明了该新方法。发现在休息和激活过程中有效氧扩散率与CMRO2高度相关,这与先前PET观察到的代谢需氧量与有效扩散率之间的强相关性一致。发现功能激活过程中有效扩散率的增加与先前报道的毛细血管血容量的增加一致,支持了这样一种观念,即测得的氧气扩散率对微血管生理很敏感。

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