首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Time-dependent spatial specificity of high-resolution fMRI: insights into mesoscopic neurovascular coupling
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Time-dependent spatial specificity of high-resolution fMRI: insights into mesoscopic neurovascular coupling

机译:高分辨率FMRI的时间依赖性空间特异性:洞察中思科神经血管耦合

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摘要

High-resolution functional magnetic resonance imaging (fMRI) is becoming increasingly popular because of the growing availability of ultra-high magnetic fields which are capable of improving sensitivity and spatial resolution. However, it is debatable whether increased spatial resolutions for haemodynamic-based techniques, like fMRI, can accurately detect the true location of neuronal activity. We have addressed this issue in functional columns and layers of animals with haemoglobin-based optical imaging and different fMRI contrasts, such as blood oxygenation level-dependent, cerebral blood flow and cerebral blood volume fMRI. In this review, we describe empirical evidence primarily from our own studies on how well these fMRI signals are spatially specific to the neuronally active site and discuss insights into neurovascular coupling at the mesoscale. This article is part of the theme issue 'Key relationships between non-invasive functional neuroimaging and the underlying neuronal activity'.
机译:高分辨率功能磁共振成像(fMRI)正变得越来越流行,因为超高磁场能够提高灵敏度和空间分辨率。然而,对于基于血流动力学的技术,如功能磁共振成像,提高空间分辨率是否能准确检测神经元活动的真实位置,仍存在争议。我们用基于血红蛋白的光学成像和不同的功能磁共振成像对比,如血氧水平依赖性、脑血流量和脑血容量功能磁共振成像,在动物的功能柱和功能层中解决了这个问题。在这篇综述中,我们主要从我们自己的研究中描述了这些功能磁共振信号在空间上对神经元活动部位的特异性,并讨论了在中尺度上对神经血管耦合的见解。这篇文章是主题议题“非侵入性功能性神经成像与潜在神经活动之间的关键关系”的一部分。

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