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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Absolute cerebral blood flow quantification with pulsed arterial spin labeling during hyperoxia corrected with the simultaneous measurement of the longitudinal relaxation time of arterial blood
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Absolute cerebral blood flow quantification with pulsed arterial spin labeling during hyperoxia corrected with the simultaneous measurement of the longitudinal relaxation time of arterial blood

机译:通过同时测量动脉血的纵向弛豫时间来校正高氧期间通过脉冲动脉旋转标记进行的绝对脑血流定量

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Quantitative arterial spin labeling (ASL) estimates of cerebral blood flow (CBF) during oxygen inhalation are important in several contexts, including functional experiments calibrated with hyperoxia and studies investigating the effect of hyperoxia on regional CBF. However, ASL measurements of CBF during hyperoxia are confounded by the reduction in the longitudinal relaxation time of arterial blood (T 1a) from paramagnetic molecular oxygen dissolved in blood plasma. The aim of this study is to accurately quantify the effect of arbitrary levels of hyperoxia on T 1a and correct ASL measurements of CBF during hyperoxia on a per-subject basis. To mitigate artifacts, including the inflow of fresh spins, partial voluming, pulsatility, and motion, a pulsed ASL approach was implemented for in vivo measurements of T 1a in the rat brain at 3 Tesla. After accounting for the effect of deoxyhemoglobin dilution, the relaxivity of oxygen on blood was found to closely match phantom measurements. The results of this study suggest that the measured ASL signal changes are dominated by reductions in T 1a for brief hyperoxic inhalation epochs, while the physiologic effects of oxygen on the vasculature account for most of the measured reduction in CBF for longer hyperoxic exposures.
机译:在多种情况下,定量吸氧对脑血流(CBF)的动脉自旋标记(ASL)估计很重要,包括用高氧校准的功能性实验和研究高氧对局部CBF的影响的研究。然而,高氧期间CBF的ASL测量结果与溶解在血浆中的顺磁性分子氧减少了动脉血液的纵向舒张时间(T 1a)混淆。这项研究的目的是准确量化任意水平的高氧对T 1a的影响,并在每个受试者的基础上纠正高氧期间CBF的ASL测量。为了减轻伪影,包括新鲜自旋的流入,部分体积,搏动性和运动性,实施了脉冲ASL方法,用于在3 Tesla下对大鼠脑中T 1a进行体内测量。在考虑了脱氧血红蛋白稀释的影响后,发现氧气对血液的松弛度与幻像测量值非常匹配。这项研究的结果表明,对于短暂的高氧吸入时期,所测得的ASL信号变化主要由T 1a的降低决定,而对于较长时间的高氧暴露,氧气对脉管系统的生理作用占了所测得的CBF降低的大部分。

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