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Inhibitory Synapses on Pacemaker Neurons in the Heart Ganglion of a Stomatopod Squilla oratoria

机译:对拟南芥紫花鸟科的心脏神经节中起搏器神经元的抑制性突触。

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摘要

The pacemaker neurons of the Squilla heart ganglion are innervated from the CNS through three pairs of extrinsic nerves. One of them, the α-nerve, is inhibitory to the heart beat. The effect of α-nerve stimulation on the pacemaker potential was examined with intracellular electrodes. Without extrinsic nerve stimulation the membrane potential of the pacemaker cell fluctuated spontaneously. On application of a tetanic train of stimuli to the α-nerve the membrane potential was shifted and fixed to a steady level, which with K2SO4-filled electrodes was near the peak of hyperpolarization after a spontaneous burst, but was less negative with KCl-filled electrodes. The shift of the membrane potential was due to the summated IPSP's. By changing the level of the membrane potential with injection of the polarizing current the IPSP could be reversed in sign, and the size of the IPSP was linearly correlated with the membrane potential level. During inhibition the membrane conductance increased. The increase depended on divalent cation concentrations in the outside medium. In Ca-rich saline the IPSP was greatly enhanced. In Mg-rich saline it was suppressed. The amplitude of antidromic spikes was reduced during inhibition especially when the spike frequency was high.
机译:鱿鱼心神经节的起搏器神经元通过三对外在神经从中枢神经系统神经支配。其中之一,α神经抑制心脏跳动。用细胞内电极检查了α神经刺激对起搏器电位的影响。在没有外部神经刺激的情况下,起搏器细胞的膜电位会自发波动。在将强直性刺激序列施加到α神经上后,膜电位被移动并固定在一个稳定的水平,在充满K2SO4的电极下,膜电位在自发爆发后接近超极化的峰值,而在充满KCl的情况下则较小电极。膜电位的变化归因于IPSP的累加。通过注入极化电流来改变膜电位的水平,可以将IPSP的符号反转,并且IPSP的大小与膜电位的水平线性相关。在抑制期间,膜电导增加。该增加取决于外部介质中的二价阳离子浓度。在富含钙的盐水中,IPSP大大提高了。在富含镁的盐水中,它被抑制了。在抑制期间,抗峰峰值的幅度会降低,尤其是当峰值频率很高时。

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