首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Signal changes in the spinal cord of the rat after injection of formalin into the hindpaw: Characterization using functional magnetic resonance imaging
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Signal changes in the spinal cord of the rat after injection of formalin into the hindpaw: Characterization using functional magnetic resonance imaging

机译:将福尔马林注射到后爪中后大鼠脊髓中的信号变化:使用功能磁共振成像的表征

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摘要

Changes in metabolism and local circulation occur in the spinal cord during peripheral noxious stimulation. Evidence is presented that this stimulation also causes signal intensity alterations in functional magnetic resonance images of the spinal cord during formalin-induced pain. These results indicate the potential of functional magnetic resonance imaging in assessing noninvasively the extent and intensity of spinal cord excitation in this well characterized pain model. Therefore, the aim of this study was to establish functional magnetic resonance imaging as a noninvasive method to characterize temporal changes in the spinal cord after a single injection of 50 μl of formalin subcutaneously into the hindpaw of the anesthetized rat. This challenge produced a biphasic licking activity in the freely moving conscious animal. Images of the spinal cord were acquired within 2 min, enabling monitoring of the site and the temporal evolution of the signal changes during the development of formalin-induced hyperalgesia without the need of any surgical procedure. The time course of changes in the spinal cord functional image in the isoflurane-anesthetized animal was similar to that obtained from behavioral experiments. Also, comparable physiological data, control experiments, and the inhibition of a response through application of the local anesthetic agent lidocaine indicate that the signal changes observed after formalin injection were specifically related to excitability changes in the relevant segments of the lumbar spinal cord. This approach could be useful to characterize different models of pain and hyperalgesia and, more importantly, to evaluate effects of analgesic drugs.
机译:在周围的有害刺激过程中,新陈代谢和局部循环的变化发生在脊髓中。有证据表明,这种刺激还会在福尔马林引起的疼痛中引起脊髓功能磁共振图像中的信号强度改变。这些结果表明功能性磁共振成像在无创地评估这种表征良好的疼痛模型中脊髓兴奋的程度和强度方面的潜力。因此,本研究的目的是建立功能性磁共振成像作为一种非侵入性方法,以表征将50μl福尔马林皮下单次注入麻醉大鼠后足后脊髓的时间变化。这一挑战在自由移动的有意识动物中产生了两相舔动活动。在2分钟内获取了脊髓的图像,从而无需任何外科手术即可监测福尔马林诱发的痛觉过敏发生期间的部位和信号变化的时间演变。异氟烷麻醉动物的脊髓功能图像变化的时间过程与行为实验所获得的时间过程相似。同样,相当的生理数据,对照实验以及通过应用局部麻醉剂利多卡因对反应的抑制作用表明,福尔马林注射后观察到的信号变化与腰脊髓相关节段中的兴奋性变化特别相关。这种方法可能有助于表征疼痛和痛觉过敏的不同模型,更重要的是,可以评估镇痛药的作用。

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