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Distributed input to the tail-siphon withdrawal circuit in Aplysia from neurons in the J cluster of the cerebral ganglion

机译:来自神经节J簇中神经元的分布式输入到海兔的尾吸虹吸回路

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摘要

Plasticity in the circuits for the withdrawal reflexes has been correlated with several simple forms of nonassociative and associative learning in Aplysia, and biochemical, biophysical, and molecular mechanisms of plasticity in these circuits have been described. In order to examine network features of this plasticity, we identified and characterized a component of the modulatory circuitry for the tail- siphon withdrawal circuit. Activation of mechanoafferent neurons in the J cluster of the cerebral ganglion produced strong and distributed input to the tail-siphon withdrawal circuit. Stimulation of the J cells led to excitatory and inhibitory effects in the sensory neurons in the pleural ganglion, the tail motor neurons in the pedal ganglion, and several classes of interneurons in the pleural ganglion, including the multifunctional neuron LPI17. Activation of the J cells produced both fast and slow post-synaptic potentials in neurons of the tail-siphon withdrawal circuit. Of particular interest was the ability of the J cells to produce slow EPSPs in the pleural sensory neurons. These slow EPSPs were associated with an increase in the excitability of the sensory neurons, but no effect of the J cells on spike duration in the sensory neurons was observed. The J cells appear to mediate both sensory and modulatory inputs to the circuit for tail withdrawal.
机译:退缩反射回路中的可塑性已经与海Ap的几种简单形式的非联想和联想学习相关联,并且已经描述了这些回路中可塑性的生化,生物物理和分子机制。为了检查这种可塑性的网络特征,我们确定并表征了尾虹吸撤回电路的调制电路的组成部分。脑神经节J团中机械力神经元的激活产生了向尾虹吸撤回回路的强大且分散的输入。 J细胞的刺激导致胸膜神经节中的感觉神经元,踏板神经节中的尾部运动神经元以及胸膜神经节中的几类中间神经元(包括多功能神经元LPI17)具有兴奋性和抑制性作用。 J细胞的激活在尾部虹吸回缩电路的神经元中产生快速和缓慢的突触后电位。特别令人感兴趣的是J细胞在胸膜感觉神经元中产生缓慢的EPSP的能力。这些缓慢的EPSPs与感觉神经元的兴奋性增加相关,但未观察到J细胞对感觉神经元的突波持续时间的影响。 J细胞似乎介导了电路的感觉输入和调节输入,以撤回尾巴。

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