Section on Functional Imaging Methods, Laboratory of Brain and Cognition, National Institute of Mental Health, National Institutes of Health, Bethesda, MD, USA.
Functional MRI Core, National Institute of Mental Health, National Institutes of Health, Bethesda, MD, USA.
Neuroimage. 2020 Feb 15;207:116358. doi: 10.1016/j.neuroimage.2019.116358. Epub 2019 Nov 15.
Earlier research in cats has shown that both cerebral blood volume (CBV) and cerebral blood flow (CBF) can be used to identify layer-dependent fMRI activation with spatial specificity superior to gradient-echo blood-oxygen-level-dependent (BOLD) contrast (Jin and Kim, 2008a). CBF contrast of perfusion fMRI at ultra-high field has not been widely applied in humans to measure laminar activity due to its low sensitivity, while CBV contrast for fMRI using vascular space occupancy (VASO) has been successfully used. However, VASO can be compromised by interference of blood in-flow effects and a temporally limited acquisition window around the blood-nulling time point. Here, we proposed to use DANTE (Delay Alternating with Nutation for Tailored Excitation) pulse trains combined with 3D-EPI to acquire an integrated VASO and perfusion (VAPER) contrast. The signal origin of the VAPER contrast was theoretically evaluated with respect to its CBV and CBF contributions using a four-compartment simulation model. The feasibility of VAPER to measure layer-dependent activity was empirically investigated in human primary motor cortex at 7 T. We demonstrated this new tool, with its highly specified functional layer profile, robust reproducibility, and improved sensitivity, to allow investigation of layer-specific cortical functions.
早期在猫的研究表明,脑血容量 (CBV) 和脑血流 (CBF) 都可以用于识别具有优于梯度回波血氧水平依赖 (BOLD) 对比的空间特异性的层依赖 fMRI 激活 (Jin 和 Kim, 2008a)。由于其灵敏度低,超高场灌注 fMRI 的 CBF 对比尚未在人类中广泛应用于测量层活动,而使用血管空间占有率 (VASO) 的 fMRI 的 CBV 对比已成功应用。然而,VASO 可能会受到血流流入效应的干扰和围绕血液消除时间点的时间有限采集窗口的限制。在这里,我们提出使用 DANTE(Delay Alternating with Nutation for Tailored Excitation)脉冲串与 3D-EPI 结合来获取集成的 VASO 和灌注 (VAPER) 对比。使用四室模拟模型从理论上评估了 VAPER 对比的信号起源与其 CBV 和 CBF 贡献有关。在 7T 下的人类初级运动皮层中,我们通过经验研究了 VAPER 测量层依赖活动的可行性。我们展示了这种新工具,其具有高度特定的功能层轮廓、稳健的可重复性和提高的灵敏度,可用于研究特定于层的皮质功能。