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视觉刺激期间皮质层依赖性动态血氧、脑血流量和脑血容量反应。

Cortical layer-dependent dynamic blood oxygenation, cerebral blood flow and cerebral blood volume responses during visual stimulation.

作者信息

Jin Tao, Kim Seong-Gi

机构信息

Department of Radiology, 3025 East Carson Street, University of Pittsburgh, Pittsburgh, PA 15203, USA.

出版信息

Neuroimage. 2008 Oct 15;43(1):1-9. doi: 10.1016/j.neuroimage.2008.06.029. Epub 2008 Jul 4.

Abstract

The spatiotemporal characteristics of cerebral blood volume (CBV) and flow (CBF) responses are important for understanding neurovascular coupling mechanisms and blood oxygenation level-dependent (BOLD) signals. For this, cortical layer-dependent BOLD, CBV and CBF responses were measured at the cat visual cortex using fMRI. Major findings are: (i) the time-dependent fMRI cortical profile is dependent on imaging modality. Overall, the peak across the cortex occurs at the cortical surface for BOLD, but at the middle cortical layer for CBV and CBF. Compared to an initial stimulation period (4-10 s), the spatial specificity of CBV to the middle cortical layer increases significantly at a later time, while the specificity of BOLD and CBF slightly changes. (ii) The CBV response at the upper cortical area containing large pial vessels has a faster onset time and time to peak than the BOLD response at the same area, and a faster time to peak than CBV at the middle cortical area with microvessels. This suggests that the dilation of microvessels at the middle cortical area follows arterial volume increase at the surface of the cortex. (iii) For all three modalities, the post-stimulus undershoot was observed with the 60-s stimulation paradigm, indicating that the post-stimulus BOLD undershoot cannot be explained by the delayed venous CBV recovery theory under our experimental conditions. (iv) The relationship between CBV and CBF responses is both spatially and temporally dependent. Thus, a single power-law scaling constant (gamma value) may not be applicable for high-resolution study.

摘要

脑血容量(CBV)和脑血流(CBF)反应的时空特征对于理解神经血管耦合机制和血氧水平依赖(BOLD)信号至关重要。为此,使用功能磁共振成像(fMRI)在猫的视觉皮层测量了皮层层依赖性BOLD、CBV和CBF反应。主要发现如下:(i)随时间变化的fMRI皮层轮廓取决于成像方式。总体而言,BOLD信号在整个皮层的峰值出现在皮层表面,而CBV和CBF的峰值出现在皮层中层。与初始刺激期(4 - 10秒)相比,CBV在后期对皮层中层的空间特异性显著增加,而BOLD和CBF的特异性略有变化。(ii)包含大软脑膜血管的上部皮层区域的CBV反应比同一区域的BOLD反应具有更快的起始时间和峰值时间,并且比具有微血管的中部皮层区域的CBV峰值时间更快。这表明中部皮层区域微血管的扩张是跟随皮层表面动脉血容量增加的。(iii)对于所有三种成像方式,在60秒刺激范式下均观察到刺激后下冲,这表明在我们的实验条件下,刺激后BOLD下冲不能用静脉CBV延迟恢复理论来解释。(iv)CBV和CBF反应之间的关系在空间和时间上都是依赖的。因此,单一的幂律缩放常数(γ值)可能不适用于高分辨率研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f10/2579763/927df86d361f/nihms72481f1.jpg

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