Van Keulen L
Neurosci Lett. 1981 Feb 6;21(3):297-300. doi: 10.1016/0304-3940(81)90220-2.
In the spinal cord of cats, simultaneous recordings were made from single Renshaw cells (extracellular) and single motoneurones (intracellular). In a total of 5 cases, the two cells of such a pair showed mutual synaptic interactions: single motoneurone spikes excited the Renshaw cell, and Renshaw cell spikes caused the appearance of short-latency hyperpolarizing potential changes in the motoneurone. Unidirectional interactions were also seen: in two cases motoneurones excited Renshaw cells from which they received no inhibition, and in 7 cases Renshaw cells caused hyperpolarizing potential changes in motoneurones from which they received no excitation. The inhibitory effect of a single Renshaw cell onto a motoneurone was very weak (average 12.7 microV; range 1.5-54 microV hyperpolarization; n = 12.
在猫的脊髓中,同时对单个闰绍细胞(细胞外)和单个运动神经元(细胞内)进行记录。在总共5例中,这样一对细胞显示出相互的突触相互作用:单个运动神经元的锋电位兴奋闰绍细胞,而闰绍细胞的锋电位在运动神经元中引起短潜伏期超极化电位变化。也观察到单向相互作用:在2例中,运动神经元兴奋它们未从其接受抑制的闰绍细胞,在7例中,闰绍细胞在它们未从其接受兴奋的运动神经元中引起超极化电位变化。单个闰绍细胞对运动神经元的抑制作用非常弱(平均12.7微伏;超极化范围为1.5 - 54微伏;n = 12)。