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Spatial synaptic distribution of recurrent and group Ia inhibitory systems in cat spinal motoneurones

机译:猫脊髓运动神经元中复发和Ia族抑制系统的空间突触分布

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摘要

1. The reversal potentials of several types of inhibitory post-synaptic potentials (IPSPs) have been studied in cat spinal motoneurones with and without modification of intracellular chloride ion (Cl-) concentration. Single barrel intracellular micropipette electrodes have been used.2. When studied with potassium citrate filled micropipettes, the reversal potential for IPSPs evoked by stimulation of antagonist group Ia afferents is the same as that for recurrent IPSPs evoked by antidromic stimulation of motoneurone axon collaterals, confirming earlier observations (Araki, Ito & Oscarsson, 1961; Coombs, Eccles & Fatt, 1955).3. Studied with potassium chloride filled micropipettes. the reversal potential for the group Ia IPSP was found to be different from that for the recurrent IPSP when the amount of Cl- diffusing or iontophoretically injected into the motoneurone was small. The amount of difference in reversal potential varied from cell to cell but when present the group Ia IPSP reversed to a depolarizing potential more readily than the recurrent IPSP in all cases.4. Interaction between recurrent IPSPs and monosynaptic excitatory post-synaptic potentials (EPSPs) was also studied and the amount of non-linearity of potential summation was measured.5. The results are consistent with the hypothesis that the terminations of Renshaw cells responsible for the recurrent IPSP are located largely on the proximal dendrites of motoneurones, while the terminations of the interneurones generating the group Ia IPSP appear to be closer to or on the cell somata.
机译:1.在有或没有改变细胞内氯离子(Cl -)浓度的猫脊髓运动神经元中,已经研究了几种类型的抑制突触后电位(IPSP)的逆转电位。已使用单桶细胞内微量移液器电极。2。用柠檬酸钾填充的微量移液器进行研究时,拮抗Ia拮抗组传入引起的IPSP的逆转潜力与反电动刺激的运动神经元轴突侧支引起的复发IPSP的逆转潜力相同,证实了较早的观察结果(Araki,Ito和Oscarsson,1961; Coombs,Eccles&Fatt,1955)3。用填充氯化钾的微量移液器研究。当Cl -扩散或离子电渗入运动神经元的量很小时,Ia IPSP组的逆转电位不同于复发性IPSP。各个细胞之间反向电位差异的量各不相同,但是在所有情况下,Ia组IPSP都比复发IPSP更容易反转为去极化电位。4。还研究了复发性IPSPs与单突触兴奋性突触后电位(EPSPs)之间的相互作用,并测量了电位总和的非线性程度。5。该结果与以下假设一致:负责复发IPSP的Renshaw细胞的末端主要位于运动神经元的近端树突上,而产生Ia IPSP组的中间神经元的末端似乎更靠近或位于细胞体上。

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