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首页> 外文期刊>Journal of Molecular Neuroscience: MN >Study of the spatial correlation between neuronal activity and BOLD fMRI responses evoked by sensory and channelrhodopsin-2 stimulation in the rat somatosensory cortex
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Study of the spatial correlation between neuronal activity and BOLD fMRI responses evoked by sensory and channelrhodopsin-2 stimulation in the rat somatosensory cortex

机译:大鼠体感皮层感觉神经和视紫红质-2刺激引起的神经元活动与BOLD fMRI反应之间的空间相关性研究

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摘要

In this work, we combined optogenetic tools with high-resolution blood oxygenation level-dependent functional MRI (BOLD fMRI), electrophysiology, and optical imaging of cerebral blood flow (CBF), to study the spatial correlation between the hemodynamic responses and neuronal activity. We first investigated the spatial and temporal characteristics of BOLD fMRI and the underlying neuronal responses evoked by sensory stimulations at different frequencies. The results demonstrated that under dexmedetomidine anesthesia, BOLD fMRI and neuronal activity in the rat primary somatosensory cortex (S1) have different frequency-dependency and distinct laminar activation profiles. We then found that localized activation of channelrhodopsin-2 (ChR2) expressed in neurons throughout the cortex induced neuronal responses that were confined to the light stimulation S1 region (<500 μm) with distinct laminar activation profile. However, the spatial extent of the hemodynamic responses measured by CBF and BOLD fMRI induced by both ChR2 and sensory stimulation was greater than 3 mm. These results suggest that due to the complex neurovascular coupling, it is challenging to determine specific characteristics of the underlying neuronal activity exclusively from the BOLD fMRI signals.
机译:在这项工作中,我们将光遗传学工具与高分辨率血液氧合水平依赖性功能性MRI(BOLD fMRI),电生理学和脑血流光学成像(CBF)相结合,以研究血液动力学反应与神经元活动之间的空间相关性。我们首先研究了BOLD fMRI的时空特征,以及不同频率的感官刺激引起的潜在神经元反应。结果表明,在右美托咪定麻醉下,大鼠原代体感皮层(S1)的BOLD fMRI和神经元活性具有不同的频率依赖性和不同的层流激活特性。然后,我们发现在整个皮层的神经元中表达的通道视紫红质蛋白2(ChR2)的局部激活引起神经元反应,该反应局限于具有独特的层状激活特征的光刺激S1区(<500μm)。但是,由ChR2和感觉刺激共同诱发的CBF和BOLD fMRI测得的血液动力学反应的空间范围大于3 mm。这些结果表明,由于复杂的神经血管耦合,仅从BOLD fMRI信号确定基础神经元活动的特定特征具有挑战性。

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