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Cortical Hemodynamic Response to Multi-afferent Stimulation: an optical imaging study

机译:皮质血流动力学对多效刺激的响应:光学成像研究。

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Multisensory stimulation plays an important role in the recovery of ischemic stroke. However, little is known about the interactions between neuronal activities with multi-afferent stimulations and their effects on hemodynamic responses. Optogenetics has been a useful tool in neuroscience research to unravel the mechanisms of neurovascular coupling at cell-specific level. In this study, we applied laser speckle contrast imaging (LSCI) to map the cortical hemodynamic response with high spatiotemporal resolution. The results showed that optogenetic inhibition of pyramidal neurons in sensorimotor cortex induced both local and distant increases of cerebral blood flow (CBF) with dual peaks, and the full width at half maximum (FWHM) was significantly larger than that of the CBF response to optogenetic excitation. Furthermore, optogenetic excitation of pyramidal neurons could significantly increase the local CBF response to sensory stimulation, whereas optogenetic inhibition of pyramidal neurons decreased the local CBF response at the early stage after sensory stimulation and increased the distant CBF response during the recovery period. Our work provided useful insights into the mechanisms of brain stimulation, which might help in clinical neurological applications.
机译:多感觉刺激在缺血性中风的恢复中起重要作用。然而,关于多活动刺激的神经元活动之间的相互作用及其对血液动力学反应的影响知之甚少。光遗传学一直是神经科学研究中揭示细胞特定水平的神经血管耦合机制的有用工具。在这项研究中,我们应用了激光散斑对比成像(LSCI)来绘制具有高时空分辨率的皮层血流动力学反应图。结果表明,锥体神经元在感觉运动皮层的光遗传学抑制作用引起脑血流量(CBF)的局部和远距离双峰增加,半峰全宽(FWHM)显着大于CBF对光遗传学反应的响应励磁。此外,锥体神经元的光遗传激发可以显着增加对感觉刺激的局部CBF反应,而锥体神经元的光遗传抑制在感觉刺激后的早期降低了局部CBF反应,并在恢复期增加了远处的CBF反应。我们的工作为脑刺激机制提供了有用的见识,这可能有助于临床神经系统应用。

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