Zhao Fuqiang, Jin Tao, Wang Ping, Kim Seong-Gi
Department of Radiology and Neurobiology, University of Pittsburgh, Pittsburgh, PA 15203, USA.
Neuroimage. 2007 Feb 1;34(3):1084-92. doi: 10.1016/j.neuroimage.2006.10.016. Epub 2006 Dec 11.
The negative blood oxygenation level-dependent (BOLD) signal following the cessation of stimulation (post-stimulus BOLD undershoot) is observed in functional magnetic resonance imaging (fMRI) studies. However, its spatial characteristics are unknown. To investigate this, gradient-echo BOLD fMRI in response to visual stimulus was obtained in isoflurane-anesthetized cats at 9.4 T. Since the middle cortical layer (layer 4) is known to have the highest metabolic and cerebral blood volume (CBV) responses, images were obtained to view the cortical cross-section. Robust post-stimulus BOLD undershoot was observed in all studies, and lasted longer than 30 s after the cessation of 40-60 s stimulation. The magnitude of post-stimulus BOLD undershoot was linearly dependent on echo time with little intercept when extrapolating to TE = 0, indicating that the T2* change is the major cause of the BOLD undershoot. The post-stimulus BOLD undershoot was observed within the cortex and near the surface of the cortex, while the prolonged CBV elevation was observed only at the middle of the cortex. Within the cortex, the largest post-stimulus undershoot was detected at the middle of the cortex, similar to the CBV increase during the stimulation period. Our findings demonstrate that, even though there is significant contribution from pial vessel signals, the post-stimulus undershoot BOLD signal is useful to improve the spatial localization of fMRI to active cortical sites.
在功能磁共振成像(fMRI)研究中观察到刺激停止后的负血氧水平依赖(BOLD)信号(刺激后BOLD信号降低)。然而,其空间特征尚不清楚。为了对此进行研究,在9.4T磁场下对异氟烷麻醉的猫进行了视觉刺激响应的梯度回波BOLD fMRI实验。由于已知大脑皮质中层(第4层)具有最高的代谢和脑血容量(CBV)反应,因此获取图像以观察皮质横截面。在所有研究中均观察到了强烈的刺激后BOLD信号降低,并且在40-60秒刺激停止后持续超过30秒。刺激后BOLD信号降低的幅度与回波时间呈线性相关,外推至TE = 0时截距很小,这表明T2*变化是BOLD信号降低的主要原因。刺激后BOLD信号降低在皮质内和皮质表面附近被观察到,而CBV的持续升高仅在皮质中部被观察到。在皮质内,最大的刺激后信号降低在皮质中部被检测到,类似于刺激期内CBV的增加。我们的研究结果表明,尽管软脑膜血管信号有显著贡献,但刺激后BOLD信号降低对于改善fMRI对活跃皮质部位的空间定位是有用的。