首页> 美国卫生研究院文献>The Journal of Neuroscience >Mapping Iso-Orientation Columns by Contrast Agent-Enhanced Functional Magnetic Resonance Imaging: Reproducibility Specificity and Evaluation by Optical Imaging of Intrinsic Signal
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Mapping Iso-Orientation Columns by Contrast Agent-Enhanced Functional Magnetic Resonance Imaging: Reproducibility Specificity and Evaluation by Optical Imaging of Intrinsic Signal

机译:通过造影剂增强的功能磁共振成像来映射等向列:再现性特异性和内在信号的光学成像评估。

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摘要

Activation resembling ocular dominance or orientation columns has been mapped with high-resolution functional magnetic resonance imaging (fMRI). However, the neuronal interpretation of these functional maps is unclear because of the poor sensitivity of fMRI, unknown point spread function (PSF), and lack of comparison with independent techniques. Here we show that cerebral blood volume (CBV)-weighted fMRI with a blood plasma contrast agent (monocrystalline iron oxide nanoparticles), in combination with continuous temporally encoded stimulation, can map columnar neuronal activity in the cat primary visual cortex with high sensitivity, selectivity, and reproducibility. We examined hemodynamic response PSF by comparing these CBV-based signals with oxygen metabolism-based negative blood oxygenation level-dependent signals. A significant positive correlation exists between CBV- and metabolism-based iso-orientation maps, suggesting that the hemodynamic PSF is narrower than intercolumn distances. We also compared CBV-based fMRI with optical intrinsic signal (OIS) imaging, a technique that identifies sites of increased neuronal activity, to investigate neuronal correlation. Iso-orientation maps obtained by fMRI and OIS were well matched, indicating that areas of the highest orientation-selective CBV signals correspond to sites of increased neural activity. Using CBV-based fMRI, we successfully mapped orientation-selective functional architecture in the medial bank of the visual cortex, an area inaccessible to OIS imaging. Thus, we conclude that contrast agent-based fMRI, in combination with continuous temporally encoded stimulation, is a highly sensitive technique capable of mapping neural activity at the resolution of functional columns without depth limitation.
机译:已经使用高分辨率功能磁共振成像(fMRI)绘制了类似眼部优势或定向列的激活图。但是,由于功能磁共振成像的敏感性差,未知的点扩散函数(PSF)和缺乏与独立技术的比较,这些功能图的神经元解释尚不清楚。在这里,我们显示了使用血浆造影剂(单晶氧化铁纳米粒子)对脑血容量(CBV)进行加权的功能磁共振成像,结合持续的时间编码刺激,可以高灵敏度,选择性地绘制猫初级视觉皮层中的柱状神经元活动。以及可重复性。通过比较这些基于CBV的信号与基于氧代谢的负血液氧合水平依赖性信号,我们检查了血流动力学反应PSF。 CBV和基于代谢的同向图之间存在显着的正相关,这表明血流动力学PSF比列间距离窄。我们还比较了基于CBV的功能性核磁共振成像和光学固有信号(OIS)成像技术,该技术可识别神经元活动增加的部位,以研究神经元相关性。通过fMRI和OIS获得的等向图非常匹配,表明方向选择性最高的CBV信号区域对应于神经活动增加的部位。使用基于CBV的功能磁共振成像,我们成功地将方向选择功能结构映射到了视觉皮层的内侧,这是OIS成像无法到达的区域。因此,我们得出结论,基于造影剂的fMRI与连续的时间编码刺激相结合,是一种高度敏感的技术,能够以功能性列的分辨率映射神经活动,而没有深度限制。

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