首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >High-resolution maps of real and illusory tactile activation in primary somatosensory cortex in individual monkeys with functional magnetic resonance imaging and optical imaging.
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High-resolution maps of real and illusory tactile activation in primary somatosensory cortex in individual monkeys with functional magnetic resonance imaging and optical imaging.

机译:具有功能磁共振成像和光学成像功能的单个猴子的初级体感皮层中真实和虚幻的触觉激活的高分辨率图。

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摘要

Although blood oxygenation level-dependent (BOLD) functional magnetic resonance imaging (fMRI) has been widely used to explore human brain function, questions remain regarding the ultimate spatial resolution of positive BOLD fMRI, and indeed the extent to which functional maps revealed by positive BOLD correlate spatially with maps obtained with other high-spatial-resolution mapping techniques commonly used in animals, such as optical imaging of intrinsic signal (OIS) and single-unit electrophysiology. Here, we demonstrate that the positive BOLD signal at 9.4T can reveal the fine topography of individual fingerpads in single-condition activation maps in nonhuman primates. These digit maps are similar to maps obtained from the same animal using intrinsic optical imaging. Furthermore, BOLD fMRI reliably resolved submillimeter spatial shifts in activation in area 3b previously identified with OIS (Chen et al., 2003) as neural correlates of the "funneling illusion." These data demonstrate that at high field, high-spatial-resolution topographic maps can be achieved using the positive BOLD signal, weakening previous notions regarding the spatial specificity of the positive BOLD signal.
机译:尽管血液氧合水平依赖性(BOLD)功能磁共振成像(fMRI)已被广泛用于探索人脑功能,但有关阳性BOLD fMRI的最终空间分辨率以及确实由阳性BOLD揭示的功能图的程度仍存在疑问在空间上与通过其他通常在动物中使用的其他高空间分辨率制图技术(例如,固有信号的光学成像(OIS)和单单元电生理学)获得的地图相关联。在这里,我们证明了9.4T处的正BOLD信号可以揭示非人类灵长类动物在单条件激活图中的各个指垫的精细地形。这些数字图类似于使用内在光学成像从同一动物获得的图。此外,BOLD fMRI可靠地解决了先前用OIS(Chen等人,2003年)鉴定为“漏斗错觉”的神经相关因素的激活区域3b中亚毫米级的空间移位。这些数据表明,在高场,高空间分辨率的地形图可以使用正的BOLD信号实现,从而削弱了先前关于正BOLD信号的空间特异性的观念。

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