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线性系统分析在层流 fMRI 中的应用:评估亮度对比度操作对 BOLD 幅度标度的影响。

Linear systems analysis for laminar fMRI: Evaluating BOLD amplitude scaling for luminance contrast manipulations.

机构信息

Experimental Psychology, Utrecht University, Utrecht, NL, Netherlands.

Spinoza Centre for Neuroimaging, Amsterdam, NL, Netherlands.

出版信息

Sci Rep. 2020 Mar 25;10(1):5462. doi: 10.1038/s41598-020-62165-x.

Abstract

A fundamental assumption of nearly all functional magnetic resonance imaging (fMRI) analyses is that the relationship between local neuronal activity and the blood oxygenation level dependent (BOLD) signal can be described as following linear systems theory. With the advent of ultra-high field (7T and higher) MRI scanners, it has become possible to perform sub-millimeter resolution fMRI in humans. A novel and promising application of sub-millimeter fMRI is measuring responses across cortical depth, i.e. laminar imaging. However, the cortical vasculature and associated directional blood pooling towards the pial surface strongly influence the cortical depth-dependent BOLD signal, particularly for gradient-echo BOLD. This directional pooling may potentially affect BOLD linearity across cortical depth. Here we assess whether the amplitude scaling assumption for linear systems theory holds across cortical depth. For this, we use stimuli with different luminance contrasts to elicit different BOLD response amplitudes. We find that BOLD amplitude across cortical depth scales with luminance contrast, and that this scaling is identical across cortical depth. Although nonlinearities may be present for different stimulus configurations and acquisition protocols, our results suggest that the amplitude scaling assumption for linear systems theory across cortical depth holds for luminance contrast manipulations in sub-millimeter laminar BOLD fMRI.

摘要

近所有功能磁共振成像(fMRI)分析的一个基本假设是,局部神经元活动与血氧水平依赖(BOLD)信号之间的关系可以用线性系统理论来描述。随着超高场(7T 及更高)MRI 扫描仪的出现,人们已经可以在人类中进行亚毫米分辨率的 fMRI 了。亚毫米分辨率 fMRI 的一个新颖而有前途的应用是测量皮质深度的响应,即层成像。然而,皮质血管系统及其与脑表面的定向血流聚集强烈影响皮质深度依赖的 BOLD 信号,特别是对于梯度回波 BOLD。这种定向聚集可能会影响皮质深度的 BOLD 线性度。在这里,我们评估线性系统理论的幅度缩放假设是否适用于皮质深度。为此,我们使用不同亮度对比度的刺激来引发不同的 BOLD 响应幅度。我们发现,皮质深度的 BOLD 幅度与亮度对比度成比例缩放,并且这种缩放在皮质深度上是相同的。尽管对于不同的刺激配置和采集协议可能存在非线性,但我们的结果表明,线性系统理论的幅度缩放假设在亚毫米层 BOLD fMRI 中的亮度对比度操纵中是成立的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4dd7/7096513/e31bb46e7875/41598_2020_62165_Fig1_HTML.jpg

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