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首页> 外文期刊>Journal of Neurophysiology >Repetitive spinal electromagnetic stimulation opens a window of synaptic plasticity in damaged spinal cord: Role of NMDA receptors
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Repetitive spinal electromagnetic stimulation opens a window of synaptic plasticity in damaged spinal cord: Role of NMDA receptors

机译:重复性脊髓电磁刺激为受损脊髓打开了突触可塑性的窗口:NMDA受体的作用

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As we reported previously, propagation of action potentials through surviving axons is impaired dramatically, resulting in reduced transmission to lumbar motoneurons after midthoracic lateral hemisection (HX) in rats. The aim of the present study was to evoke action potentials through the spared fibers using noninvasive electromagnetic stimulation (EMS) over intact T2 vertebrae in an attempt to activate synaptic inputs to lumbar motoneurons and thus to enhance plasticity of spinal neural circuits after HX. We found that EMS was able to activate synaptic inputs to lumbar motoneurons and motor-evoked potentials (MEP) in hindlimb muscles in adult anesthetized rats. Amplitude of MEP was attenuated in parallel with the decline of responses recorded from the motoneuron pool after HX. Repetitive EMS (50 min, 0.2 Hz) facilitated the amplitudes of responses elicited by electric stimulation of lateral white matter or dorsal corticospinal tracts in HX rats. Facilitation sustained for at least 1.5 h after termination of EMS. The N-methyl- D-aspartate (NMDA) receptor blocker MK-801, injected intraspinally close to the recording electrode prior to EMS, did not alter these responses but blocked the EMS-induced facilitation, suggesting that activation of NMDA receptors is required to initiate an EMS-evoked increase. When MK-801 was administered after EMS-induced facilitation was established, it induced depression of these elevated responses. Results suggest that repetitive EMS over intact vertebrae could be used as a therapeutic approach to open a window of synaptic plasticity after incomplete midthoracic injuries, i.e., to activate NMDA receptors in the lumbar motoneuron pool at synaptic inputs and to strengthen transmission in damaged spinal cord.
机译:正如我们先前报道的那样,动作电位通过存活的轴突的传播受到了极大的损害,从而导致大鼠胸中外侧半切(HX)后向腰运动神经元的传递减少。本研究的目的是使用无创电磁刺激(EMS)在完整的T2椎骨上通过多余的纤维诱发动作电位,以尝试激活突触输入到腰部运动神经元,从而增强HX后脊神经回路的可塑性。我们发现EMS能够激活成年麻醉大鼠后肢肌肉中突触输入到腰部运动神经元和运动诱发电位(MEP)。 MEP的振幅与HX后运动神经元池记录的响应下降同时减弱。重复EMS(50分钟,0.2 Hz)可促进电刺激HX大鼠侧白质或背皮质脊髓束引起的反应幅度。 EMS终止后,促进持续至少1.5小时。 N-甲基-D-天门冬氨酸(NMDA)受体阻滞剂MK-801在EMS之前在脊髓内向记录电极附近注射,并没有改变这些反应,但阻断了EMS诱导的促进作用,表明需要激活NMDA受体才能启动EMS引起的费用增加。在建立EMS诱导的促进作用后施用MK-801时,它会抑制这些升高的反应。结果表明,对完整椎体进行重复EMS可以用作治疗方法,以在不完全的胸中段损伤后打开突触可塑性的窗口,即激活突触输入时腰运动神经元池中的NMDA受体并增强受损脊髓的传递。

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