Spinoza Center for Neuroimaging, Royal Netherlands Academy of Arts and Sciences, Amsterdam, The Netherlands.
Computational Cognitive Neuroscience and Neuroimaging, Netherlands Institute for Neuroscience, Amsterdam, The Netherlands.
Hum Brain Mapp. 2023 Apr 15;44(6):2509-2522. doi: 10.1002/hbm.26227. Epub 2023 Feb 10.
BOLD fMRI is widely applied in human neuroscience but is limited in its spatial specificity due to a cortical-depth-dependent venous bias. This reduces its localization specificity with respect to neuronal responses, a disadvantage for neuroscientific research. Here, we modified a submillimeter BOLD protocol to selectively reduce venous and tissue signal and increase cerebral blood volume weighting through a pulsed saturation scheme (dubbed Arterial Blood Contrast) at 7 T. Adding Arterial Blood Contrast on top of the existing BOLD contrast modulated the intracortical contrast. Isolating the Arterial Blood Contrast showed a response free of pial-surface bias. The results suggest that Arterial Blood Contrast can modulate the typical fMRI spatial specificity, with important applications in in-vivo neuroscience.
BOLD fMRI 在人类神经科学中得到了广泛应用,但由于皮质深度相关的静脉偏倚,其空间特异性受到限制。这降低了其相对于神经元反应的定位特异性,这对神经科学研究来说是一个不利因素。在这里,我们修改了一个亚毫米级的 BOLD 方案,通过在 7T 下使用脉冲饱和方案(称为动脉血对比)有选择性地减少静脉和组织信号,并增加脑血容量权重。在现有的 BOLD 对比基础上增加动脉血对比可以调节皮质内对比。分离动脉血对比显示出一种没有脑膜表面偏倚的反应。结果表明,动脉血对比可以调节典型的 fMRI 空间特异性,在活体神经科学中有重要的应用。