首页> 美国卫生研究院文献>Frontiers in Neuroscience >Novel Calibrated Short TR Recovery (CaSTRR) Method for Brain-Blood Partition Coefficient Correction Enhances Gray-White Matter Contrast in Blood Flow Measurements in Mice
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Novel Calibrated Short TR Recovery (CaSTRR) Method for Brain-Blood Partition Coefficient Correction Enhances Gray-White Matter Contrast in Blood Flow Measurements in Mice

机译:用于脑血分配系数校正的新型校准短TR恢复(CaSTRR)方法增强了小鼠血流测量中的灰白色物质对比度

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摘要

The goal of the study was to develop a novel, rapid Calibrated Short TR Recovery (CaSTRR) method to measure the brain-blood partition coefficient (BBPC) in mice. The BBPC is necessary for quantifying cerebral blood flow (CBF) using tracer-based techniques like arterial spin labeling (ASL), but previous techniques required prohibitively long acquisition times so a constant BBPC equal to 0.9 mL/g is typically used regardless of studied species, condition, or disease. An accelerated method of BBPC correction could improve regional specificity in CBF maps particularly in white matter. Male C57Bl/6N mice (n = 8) were scanned at 7T using CaSTRR to measure BBPC determine regional variability. This technique employs phase-spoiled gradient echo acquisitions with varying repetition times (TRs) to estimate proton density in the brain and a blood sample. Proton density weighted images are then calibrated to a series of phantoms with known concentrations of deuterium to determine BBPC. Pseudo-continuous ASL was also acquired to quantify CBF with and without empirical BBPC correction. Using the CaSTRR technique we demonstrate that, in mice, white matter has a significantly lower BBPC (BBPCwhite = 0.93 ± 0.05 mL/g) than cortical gray matter (BBPCgray = 0.99 ± 0.04 mL/g, p = 0.03), and that when voxel-wise BBPC correction is performed on CBF maps the observed difference in perfusion between gray and white matter is improved by as much as 14%. Our results suggest that BBPC correction is feasible and could be particularly important in future studies of perfusion in white matter pathologies.
机译:该研究的目的是开发一种新颖的快速校准的短TR恢复(CaSTRR)方法,以测量小鼠的脑血分配系数(BBPC)。 BBPC是使用基于示踪剂的技术(如动脉自旋标记(ASL))定量脑血流(CBF)所必需的,但是以前的技术要求获取时间过长,因此无论研究的物种如何,通常都使用等于0.9 mL / g的恒定BBPC ,状况或疾病。加快BBPC校正的方法可以提高CBF图中的区域特异性,尤其是在白质中。使用CaSTRR在7T扫描雄性C57Bl / 6N小鼠(n = 8),以测量BBPC来确定区域变异性。这项技术采用具有变差的重复时间(TR)的相位损坏的梯度回波采集来估算大脑和血液样本中的质子密度。然后将质子密度加权图像校准为具有已知氘浓度的一系列体模,以确定BBPC。还获得了伪连续ASL以量化有无BBPC校正的CBF。使用CaSTRR技术,我们证明,在小鼠中,白质的BBPC(BBPCwhite = 0.93±0.05 mL / g)显着低于皮质灰质(BBPCgray = 0.99±0.04 mL / g,p = 0.03),并且在CBF图上执行体素BBPC校正,观察到的灰质和白质之间的灌注差异提高了14%。我们的结果表明,BBPC校正是可行的,并且在将来对白质病理的灌注研究中可能特别重要。

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