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首页> 外文期刊>Journal of Neurophysiology >Modulation of trigeminal spinal subnucleus caudalis neuronal activity following regeneration of transected inferior alveolar nerve in rats.
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Modulation of trigeminal spinal subnucleus caudalis neuronal activity following regeneration of transected inferior alveolar nerve in rats.

机译:大鼠横断下牙槽神经再生后三叉神经脊髓尾核神经元活性的调节。

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Modulation of trigeminal spinal subnucleus caudalis neuronal activity following regeneration of transected inferior alveolar nerve in rats. To clarify the neuronal mechanisms of abnormal pain in the face innervated by the regenerated inferior alveolar nerve (IAN), nocifensive behavior, trigeminal ganglion neuronal labeling following Fluorogold (FG) injection into the mental skin, and trigeminal spinal subnucleus caudalis (Vc) neuronal properties were examined in rats with IAN transection. The mechanical escape threshold was significantly higher at 3 days and lower at 14 days after IAN transection, whereas head withdrawal latency to heat was significantly longer at 3, 14, and 60 days after IAN transection. The number of FG-labeled ganglion neurons was significantly reduced at 3 days after IAN transection but increased at 14 and 60 days. The number of wide dynamic range (WDR) neurons with background (BG) activity was significantly higher at 14 and 60 days after IAN transection compared with naive rats, and the number of WDR and low-threshold mechanoreceptive (LTM) neurons with irregularly bursting BG activity was increased at these two time points. Mechanically evoked responses were significantly larger in WDR and LTM neurons 14 days after IAN transection compared with naive rats. Heat- and cold-evoked responses in WDR neurons were significantly lower at 14 days after transection compared with naive rats. Mechanoreceptive fields were also significantly larger in WDR and LTM neurons at 14 and 60 days after IAN transection. These findings suggest that these alterations may be involved in the development of mechanical allodynia in the cutaneous region innervated by the regenerated IAN.
机译:大鼠横断下牙槽神经再生后三叉神经脊髓尾核神经元活性的调节。为了阐明由再生的下牙槽神经(IAN)支配的面部异常疼痛的神经元机制,伤害行为,向精神皮肤注射氟金(FG)后的三叉神经节神经元标记以及三叉神经尾神经尾核(Vc)的神经元特性在IAN横断大鼠中进行了检查。机械性逃逸阈值在IAN横断后第3天显着升高,在14天后降低,而在IAN横断后第3、14和60天,头部退热的潜伏期明显更长。 FG标记的神经节神经元的数量在IAN横断后3天时明显减少,但在14天和60天时增加。与原始大鼠相比,在IAN横断后第14天和第60天,具有背景(BG)活动的宽动态范围(WDR)神经元的数量显着增加,具有不规则爆裂BG的WDR和低阈值机械感受性(LTM)神经元的数量在这两个时间点活动增加。 IAN横断后14天,WDR和LTM神经元的机械诱发反应明显大于未处理大鼠。与幼稚大鼠相比,横切后14天WDR神经元的热诱发反应和冷诱发反应明显降低。 IAN横断后14天和60天,WDR和LTM神经元的机械感受野也明显变大。这些发现表明这些改变可能参与了由再生IAN支配的皮肤区域的机械性异常性疼痛的发展。

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