Department of Radiology, University Medical Center Utrecht UMC, H.P. E 01.132, Heidelberglaan 100, 3584 CX Utrecht, The Netherlands.
Department of Radiotherapy, University Medical Center Utrecht UMC, H.P. E 01.132, Heidelberglaan 100, 3584 CX Utrecht, The Netherlands.
Neuroimage. 2015 Jul 1;114:239-48. doi: 10.1016/j.neuroimage.2015.04.014. Epub 2015 Apr 12.
Changes in cerebral blood flow (CBF) in response to hypercapnia induced changes in vascular tone, known as cerebrovascular reactivity (CVR), can be measured using the Blood Oxygenation Level Dependent (BOLD) MR contrast. We examine regional differences in the BOLD-CVR response to a progressively increasing hypercapnic stimulus as well as regional BOLD characteristics for the return to baseline normocapnia. CVR across 9 subjects was highest in the cerebral lobes and deep gray matter. Peak CVR in these regions was measured at 3.6±1.6mmHg above baseline end-tidal CO2. White matter CVR was generally reduced compared to that of the gray matter (peak white matter CVR was ~48% lower). A positive relationship between the end-tidal CO2 value at which peak CVR was measured and white matter depth is observed. Furthermore, the time required for the BOLD signal to return to baseline after cessation of the hypercapnic stimulus, was also related to white matter depth; the return, expressed as a time constant, was ~25% longer in white matter. To explain the observed differences in regional CVR response, a model is proposed that takes into account the local architecture of the cerebrovascular, which can result in changes in regional blood flow distribution as a function of end-tidal CO2.
脑血流(CBF)对血管张力变化(即脑血管反应性,CVR)的变化的响应可以使用血氧水平依赖(BOLD)MR 对比来测量。我们检查了对逐渐增加的高碳酸血症刺激的 BOLD-CVR 反应的区域差异,以及返回基线正常碳酸血症的区域 BOLD 特征。在 9 个受试者中,CBF-CVR 在大脑叶和深部灰质中最高。这些区域的 CVR 峰值在基础呼吸末 CO2 以上 3.6±1.6mmHg 处测量。与灰质相比,白质的 CVR 通常较低(白质的 CVR 峰值低约 48%)。观察到测量 CVR 峰值的呼吸末 CO2 值与白质深度之间存在正相关关系。此外,BOLD 信号在停止高碳酸血症刺激后返回基线所需的时间也与白质深度有关;在白质中,返回时间(表示为时间常数)延长约 25%。为了解释观察到的区域 CVR 反应差异,提出了一个考虑脑血管局部结构的模型,该模型可以导致局部血流分布随呼吸末 CO2 的变化而变化。