Méndez-Fernández Abraham, Moreno-Castillo Mayra, Huidobro Nayeli, Flores Amira, Manjarrez Elias
Instituto de Fisiología, Benemérita Universidad Autónoma de Puebla, Puebla, México.
Front Integr Neurosci. 2020 Jan 24;13:75. doi: 10.3389/fnint.2019.00075. eCollection 2019.
Spinal motoneurons exhibit sustained afterdischarges and plateau potentials following a brief high-frequency stimulation of Ia afferents. Also, there is evidence that spinal cord interneurons exhibit plateau potentials. However, to our knowledge, there are no reports about the possible afterdischarge behavior of lumbar spinal interneurons activated by Ia afferents. Given that there are spinal interneurons receiving monosynaptic inputs from Ia afferents, these cells could then be activated in parallel to motoneurons after repetitive muscle stretch. We explored this possibility in cats with a precollicular-postmammillary decerebration. We found that a brief high-frequency stimulation of Ia afferents produces afterdischarges that are highly correlated to a DC slow potential recorded at the cord dorsum. We conclude that in the cat spinal cord, not only the motoneurons but also the interneurons from the superficial and deep dorsal horn produce sustained afterdischarges, thus highlighting the importance of interneurons in the spinal neuronal circuitry. The significance of our finding is that it opens the possibility that the spinal cord interneurons activated by Ia afferents could also exhibit bistability, a relevant phenomenon well-characterized in the motoneurons.
在对Ia传入纤维进行短暂高频刺激后,脊髓运动神经元会出现持续的后放电和平台电位。此外,有证据表明脊髓中间神经元也表现出平台电位。然而,据我们所知,尚无关于由Ia传入纤维激活的腰段脊髓中间神经元可能的后放电行为的报道。鉴于存在接受Ia传入纤维单突触输入的脊髓中间神经元,在重复肌肉拉伸后,这些细胞可能会与运动神经元同时被激活。我们在去大脑皮层-乳头体前的猫身上探究了这种可能性。我们发现,对Ia传入纤维进行短暂高频刺激会产生与脊髓背侧记录到的直流慢电位高度相关的后放电。我们得出结论,在猫脊髓中,不仅运动神经元,而且来自浅、深背角的中间神经元也会产生持续的后放电,从而突出了中间神经元在脊髓神经元回路中的重要性。我们这一发现的意义在于,它开启了由Ia传入纤维激活的脊髓中间神经元也可能表现出双稳态的可能性,双稳态是在运动神经元中得到充分表征的一个相关现象。