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Volumetric Spatial Correlations of Neurovascular Coupling Studied using Single Pulse Opto-fMRI

机译:单脉冲光核磁共振成像研究神经血管耦合的空间空间相关性。

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摘要

Neurovascular coupling describes the link between neuronal activity and cerebral blood flow. This relationship has been the subject of intense scrutiny, with most previous work seeking to understand temporal correlations that describe neurovascular coupling. However, to date, the study of spatial correlations has been limited to two-dimensional mapping of neuronal or vascular derived signals emanating from the brain’s surface, using optical imaging techniques. Here, we investigate spatial correlations of neurovascular coupling in three dimensions, by applying a single 10 ms pulse of light to trigger optogenetic activation of cortical neurons transduced to express channelrhodopsin2, with concurrent fMRI. We estimated the spatial extent of increased neuronal activity using a model that takes into the account the scattering and absorption of blue light in brain tissue together with the relative density of channelrhodopsin2 expression across cortical layers. This method allows precise modulation of the volume of activated tissue in the cerebral cortex with concurrent three-dimensional mapping of functional hyperemia. Single pulse opto-fMRI minimizes adaptation, avoids heating artefacts and enables confined recruitment of the neuronal activity. Using this novel method, we present evidence for direct proportionality of volumetric spatial neurovascular coupling in the cerebral cortex.
机译:神经血管耦合描述了神经元活动与脑血流之间的联系。这种关系一直是严格审查的主题,大多数以前的工作试图理解描述神经血管耦合的时间相关性。但是,迄今为止,空间相关性的研究仅限于使用光学成像技术对从大脑表面发出的神经元或血管源性信号进行二维映射。在这里,我们通过应用单个10µms的光脉冲来触发皮层神经元的光遗传学激活,并通过功能性磁共振成像同时表达,从而研究神经血管耦合在三个维度上的空间相关性。我们使用考虑到脑组织中蓝光的散射和吸收以及跨皮层的channelrhodopsin2表达的相对密度的模型来估计神经元活动增加的空间范围。这种方法可以对功能性充血同时进行三维映射,从而精确调节大脑皮层中活化组织的体积。单脉冲光核磁共振成像可最大程度地降低适应性,避免加热伪影,并能限制神经元活动的募集。使用这种新颖的方法,我们为大脑皮层中体积空间神经血管耦合的直接比例提供证据。

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