首页> 美国卫生研究院文献>The Journal of Physiology >Intraspinally mediated state-dependent enhancement of motoneurone excitability during fictive scratch in the adult decerebrate cat
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Intraspinally mediated state-dependent enhancement of motoneurone excitability during fictive scratch in the adult decerebrate cat

机译:脊髓介导的成年无脑猫虚构刮擦过程中运动神经元兴奋性的状态依赖性增强

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摘要

This is the first study to report on the increase in motoneurone excitability during fictive scratch in adult decerebrate cats. Intracellular recordings from antidromically identified motoneurones revealed a decrease in the voltage threshold for spike initiation (Vth), a suppression of motoneurone afterhyperpolarization and activation of voltage-dependent excitation at the onset of scratch. These state-dependent changes recovered within 10–20 s after scratch and could be evoked after acute transection of the spinal cord at C1. Thus, there is a powerful intraspinal system that can quickly and reversibly re-configure neuronal excitability during spinal network activation. Fictive scratch was evoked in spinal intact and transected decerebrate preparations by stroking the pinnae following topical curare application to the dorsal cervical spinal cord and neuromuscular block. Hyperpolarization of Vth occurred (mean −5.8 mV) in about 80% of ipsilateral flexor, extensor or bifunctional motoneurones during fictive scratch. The decrease in Vth began before any scratch-evoked motoneurone activity as well as during the initial phase in which extensors are tonically hyperpolarized. The Vth of contralateral extensors depolarized by a mean of +3.7 mV during the tonic contralateral extensor activity accompanying ipsilateral scratch. There was a consistent and substantial reduction of afterhyperpolarization amplitude without large increases in motoneurone conductance in both spinal intact and transected preparations. Depolarizing current injection increased, and hyperpolarization decreased the amplitude of rhythmic scratch drive potentials in acute spinal preparations indicating that the spinal scratch-generating network can activate voltage-dependent conductances in motoneurones. The enhanced excitability in spinal preparations associated with fictive scratch indicates the existence of previously unrecognized, intraspinal mechanisms increasing motoneurone excitability.
机译:这是第一个报告成年无脑成年猫虚构刮擦过程中运动神经元兴奋性增加的研究。来自抗染色体识别的运动神经元的细胞内记录显示,尖峰启动(Vth)的电压阈值降低,超极化后运动神经元的抑制和在刮擦开始时激活电压依赖性激发。这些与状态有关的变化在刮擦后的10–20 s内恢复,并可能在C1处的脊髓急性横切后引起。因此,有一个强大的脊髓内系统可以在脊髓网络激活过程中快速且可逆地重新配置神经元兴奋性。局部刮宫向颈背脊髓和神经肌肉阻滞施加局部刺激后,通过抚摸耳廓,在脊柱完整和横切去脑制剂中诱发虚构的划痕。在虚构的刮擦过程中,约80%的同侧屈肌,伸肌或双功能运动神经元发生Vth超极化(平均-5.8 mV)。 Vth的降低开始于任何由刮伤引起的运动神经元活性之前,以及在伸肌被超极化的初始阶段。对侧伸肌的Vth在伴随同侧刮擦的强直对侧伸肌活动期间去极化平均+3.7 mV。在完整和横切的脊髓制剂中,超极化后振幅均持续且显着降低,而运动神经元电导没有大幅度增加。在急性脊髓制剂中,去极化电流注入增加,而超极化降低了节律性刮擦驱动电位的幅度,表明产生脊柱刮擦的网络可以激活运动神经元中依赖电压的电导。与虚拟刮擦相关​​的脊柱制剂中增强的兴奋性表明存在以前未认识到的增加运动神经元兴奋性的脊柱内机制。

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