首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >Physiological changes of premotor nonspiking interneurons in the central compensation of eyestalk posture following unilateral sensory ablation in crayfish
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Physiological changes of premotor nonspiking interneurons in the central compensation of eyestalk posture following unilateral sensory ablation in crayfish

机译:小龙虾单侧感觉消融后运动前不刺神经元在眼轴姿势中央补偿中的生理变化

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摘要

We investigated how the physiological characteristics and synaptic activities of nonspiking giant interneurons (NGIs), which integrate sensory inputs in the brain and send synaptic outputs to oculomotor neurons innervating eyestalk muscles, changed after unilateral ablation of the statocyst in order to clarify neuronal mechanisms underlying the central compensation process in crayfish. The input resistance and membrane time constant in recovered animals that restored the original symmetrical eyestalk posture 2 weeks after operation were significantly greater than those immediately after operation on the operated side whereas in non-recovered animals only the membrane time constant showed a significant increase. On the intact side, both recovered and non-recovered animals showed no difference. The frequency of synaptic activity showed a complex pattern of change on both sides depending on the polarity of the synaptic potential. The synaptic activity returned to the bilaterally symmetrical level in recovered animals while bilateral asymmetry remained in non-recovered ones. These results suggest that the central compensation of eyestalk posture following unilateral impairment of the statocyst is subserved by not only changes in the physiological characteristics of the NGI membrane but also the activity of neuronal circuits presynaptic to NGIs.
机译:我们研究了单峰消融囊泡后非尖峰大神经元(NGIs)的生理特性和突触活动如何发生变化,这些神经元整合了大脑中的感觉输入并将突触输出发送给支配眼柄肌肉的动眼神经元,以阐明其潜在的神经元机制。小龙虾的中央补偿过程。术后2周恢复了原始对称眼柄姿势的恢复动物的输入阻力和膜时间常数显着大于手术侧立即恢复后的动物,而在未恢复动物中,只有膜时间常数显着增加。在完整方面,恢复和未恢复的动物均无差异。突触活动的频率在两侧显示出复杂的变化模式,具体取决于突触电位的极性。在恢复的动物中,突触活性恢复到双侧对称水平,而在未恢复的动物中,双侧不对称保持。这些结果表明,单侧损害囊肿后眼球姿势的中央补偿不仅可以通过NGI膜生理特性的变化得到保护,而且可以通过突触到NGIs的神经元回路的活动得到保护。

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