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对负性BOLD反应的时间和幅度的结构影响。

Structural impacts on the timing and amplitude of the negative BOLD response.

作者信息

Provencher David, Bizeau Alexandre, Gilbert Guillaume, Bérubé-Lauzière Yves, Whittingstall Kevin

机构信息

Department of Nuclear Medicine and Radiobiology, Université de Sherbrooke, 3001, 12e Avenue Nord, Sherbrooke J1H 5N4, Canada.

Department of Nuclear Medicine and Radiobiology, Université de Sherbrooke, 3001, 12e Avenue Nord, Sherbrooke J1H 5N4, Canada.

出版信息

Magn Reson Imaging. 2018 Jan;45:34-42. doi: 10.1016/j.mri.2017.09.007. Epub 2017 Sep 14.

Abstract

The positive (PBR) and negative BOLD responses (NBR) arising in task-fMRI display varying magnitudes and dynamics across voxels. While the effects of structure, particularly of veins, on the PBR have been studied, little is known of NBR-structure relationships. Like the PBR, the NBR is often used as a surrogate marker of neuronal activation in both basic and clinical research and assessing its relationship with cortical structure may help interpret group differences. We therefore investigated how local structure affects BOLD amplitude and timing in PBR and NBR areas using multi-band fMRI during visual stimulation to obtain high temporal resolution (TR=0.45s) data combined with T1 imaging and susceptibility-weighted imaging (SWI) to quantify the local densities of gray/white matter and veins, respectively. In both PBRs and NBRs, larger venous density was consistently associated with larger BOLD amplitude and delay, up to 1-2s larger relative to areas devoid of large veins. Both binary and sinusoidal visual stimulus modulation yielded similar activation maps and results, suggesting that underlying vasculature affects PBR and NBR temporal dynamics in the same manner. Accounting for structural impacts on PBR and NBR magnitude and timing could help enhance activation map accuracy, better assess functional connectivity, and better characterize neurovascular coupling.

摘要

任务功能磁共振成像(task-fMRI)中出现的正性血氧水平依赖反应(PBR)和负性血氧水平依赖反应(NBR)在各体素间表现出不同的幅度和动态变化。虽然已经研究了结构,特别是静脉结构对PBR的影响,但对于NBR与结构的关系却知之甚少。与PBR一样,NBR在基础研究和临床研究中常被用作神经元激活的替代标志物,评估其与皮质结构的关系可能有助于解释组间差异。因此,我们利用多波段功能磁共振成像在视觉刺激期间研究了局部结构如何影响PBR和NBR区域的血氧水平依赖信号幅度和时间,以获得高时间分辨率(TR = 0.45秒)的数据,并结合T1成像和磁敏感加权成像(SWI)分别量化灰质/白质和静脉的局部密度。在PBR和NBR中,较高的静脉密度始终与较大的血氧水平依赖信号幅度和延迟相关,相对于没有大静脉的区域,延迟可达1 - 2秒。二元和正弦视觉刺激调制产生了相似的激活图和结果,表明潜在的血管系统以相同的方式影响PBR和NBR的时间动态。考虑结构对PBR和NBR幅度及时间的影响有助于提高激活图的准确性,更好地评估功能连接性,并更好地表征神经血管耦合。

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