Habituation of LG-mediated tailflip in the crayfish.

Q4 Neuroscience
Invertebrate Neuroscience Pub Date : 2015-06-01 Epub Date: 2015-03-22 DOI:10.1007/s10158-015-0178-8
Toshiki Nagayama, Makoto Araki
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引用次数: 9

Abstract

Crayfish escape from threatening stimuli by tailflipping. If a stimulus is applied to the rear, crayfish escape up and forwards in a summersault maneuver that is mediated by the activation of lateral giant (LG) interneurons. The occurrence probability of LG-mediated tailflip, however, diminishes and habituates if a stimulus is repeatedly applied. Since crayfish have a relatively simple CNS with many identifiable neurons, crayfish represent a good animal to analyze the cellular basis of habituation. A reduction in the amplitude of the EPSP in the LGs, caused by direct chemical synaptic connection from sensory afferents by repetitive stimulations, is essential to bring about an inactivation of the LGs. The spike response of the LGs recovers within several minutes of habituation, but the LGs subsequently fail to spike when an additional stimulus is applied after specific periods following habituation. These results indicate that a decline in synaptic efficacy from the mechanosensory afferents recovers readily after a short delay, but then the excitability of the LGs themselves decreases. Furthermore, the processes underlying habituation are modulated depending on a social status. When two crayfish encounter each other, a winner-loser relationship is established. With a short interstimulus interval of 5 s, the rate of habituation of the LG in both socially dominant and subordinate crayfish becomes lower than in socially isolated animals. Serotonin and octopamine affect this social status-dependent modulation of habituation by means of activation of downstream second messenger system of cAMP and IP3 cascades, respectively.

小龙虾脑电介导的尾巴翻转的习惯化。
小龙虾通过翻转尾巴来躲避危险的刺激。如果刺激施加到后部,小龙虾就会在激活外侧巨(LG)中间神经元的介导下,以夏季翻腾的动作向上和向前逃跑。然而,如果重复施加刺激,则lg介导的翻尾发生概率会减少并习惯性。由于小龙虾具有相对简单的中枢神经系统和许多可识别的神经元,因此小龙虾是分析习惯化细胞基础的良好动物。由重复刺激引起的感觉传入的直接化学突触连接引起的LGs中EPSP振幅的降低是导致LGs失活的必要条件。在适应后的几分钟内,LGs的峰值反应恢复,但在适应后的特定时期施加额外刺激时,LGs随后无法达到峰值。这些结果表明,机械感觉传入的突触效能下降在短暂延迟后很容易恢复,但随后LGs本身的兴奋性下降。此外,习惯化的过程是根据社会地位而调节的。当两只小龙虾相遇时,一种输赢的关系就建立了。在短暂的5 s的刺激间隔中,社会优势和从属小龙虾的LG适应率都低于社会孤立动物。血清素和章鱼胺分别通过激活下游cAMP和IP3级联的第二信使系统来影响这种社会地位依赖性的习惯化调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Invertebrate Neuroscience
Invertebrate Neuroscience NEUROSCIENCES-
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: Invertebrate Neurosciences publishes peer-reviewed original articles, reviews and technical reports describing recent advances in the field of invertebrate neuroscience. The journal reports on research that exploits the simplicity and experimental tractability of the invertebrate preparations to underpin fundamental advances in neuroscience. Articles published in Invertebrate Neurosciences serve to highlight properties of signalling in the invertebrate nervous system that may be exploited in the field of antiparisitics, molluscicides and insecticides. Aspects of particular interest include: Functional analysis of the invertebrate nervous system; Molecular neuropharmacology and toxicology; Neurogenetics and genomics; Functional anatomy; Neurodevelopment; Neuronal networks; Molecular and cellular mechanisms of behavior and behavioural plasticity.
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