首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Spontaneous BOLD waves - A novel hemodynamic activity in Sprague-Dawley rat brain detected by functional magnetic resonance imaging
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Spontaneous BOLD waves - A novel hemodynamic activity in Sprague-Dawley rat brain detected by functional magnetic resonance imaging

机译:自发大胆的波 - 通过功能磁共振成像检测到Sprague-Dawley大鼠脑中的新型血流动力学活性

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摘要

We report spontaneous hemodynamic activity termed "Spontaneous BOLD Waves" (SBWs) detected by BOLD fMRI in Sprague-Dawley rats under medetomidine anesthesia. These SBWs, which lasted several minutes, were observed in cortex, thalamus and hippocampus. The SBWs' correlates were undetectable in electrophysiological recordings, suggesting an exclusive gliovascular phenomenon dissociated from neuronal activity. SBWs were insensitive to the NMDA receptors antagonist MK-801 but were inhibited by the alpha 1-adrenoceptor blocker prazosin. Since medetomidine is a potent agonist of alpha 2 adrenoceptors, we suggested that imbalance in alpha 1/alpha 2 receptor-mediated signalling pathways alter the vascular reactivity leading to SBWs. The frequency of SBWs increased with intensity of mechanical lung ventilation despite the stable pH levels. In summary, we present a novel type of propagating vascular brain activity without easily detectable underlying neuronal activity, which can be utilized to study the mechanisms of vascular reactivity in functional and pharmacological MRI and has practical implications for designing fMRI experiments in anesthetized animals.
机译:我们举报了在edetomidine麻醉下Sprague-Dawley大鼠的大胆FMRI检测到的“自发大胆波”(SBW)被称为自发的血流动力学活动。这些SBW在皮质,丘脑和海马中持续了几分钟。在电生理记录中,SBW的相关性是不可检测的,这表明来自神经元活动的独占脑血管现象。 SBW对NMDA受体拮抗剂MK-801不敏感,但是由α1-肾上腺素受体阻滞剂普罗唑汀抑制。由于Mebetomidine是α2肾上腺素受体的有效激动剂,因此建议在α1/α2受体介导的信号传导途径中的不平衡改变导致SBWS的血管反应性。尽管pH水平稳定,SBW的频率随机械肺气通气的强度而增加。总之,我们介绍了一种新型的繁殖血管脑活动,而无需易于检测的潜在神经元活性,其可用于研究功能性和药理学MRI中的血管反应性的机制,并且对设计麻醉动物的FMRI实验具有实际意义。

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