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首页> 外文期刊>Comparative biochemistry and physiology, Part B. Biochemistry & molecular biology >The effects of 5-HT on sensory,central and motor neurons driving the abdominal superficial flexor muscles in the crayfish
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The effects of 5-HT on sensory,central and motor neurons driving the abdominal superficial flexor muscles in the crayfish

机译:5-HT对驱动小龙虾腹部浅屈肌的感觉,中枢和运动神经元的影响

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摘要

Serotonin (5-HT) induces a variety of physiological and behavioral effects in crustaceans. However, the mechanisms employed by 5-UT to effect behavorial changes are not fully understood. Among the mechanisms by which these changes might occur are alterations in synaptic drive and efficacy of sensory, interneurons and motor neurons, as well as direct effects on muscles. We investigated these aspects with the use of a defined sensory-motor system, which is entirely contained within a single abdominal segment and consists of a ‘cuticular sensory neurons—segmental ganglia—abdominal superficial flexor motor neurons—muscles’ circuit. Our studies address the role of 5-UT in altering (1) the activity of motor neurons induced by sensory stimulation; (2) the inherent excitability of superficial flexor motor neurons; (3) transmitter release properties of the motor nerve terminal and (4) input resistance of the muscle. Using en passant recordings from the motor nerve, with and without sensory stimulation, and intracellular recordings from the muscle, we show that 5-HT enhances sensory drive and output from the ventral nerve cord resulting in an increase in the firing frequency of the motor neurons. Also, 5-UT increases transmitter release at the neuromuscular junction, and alters input resistance of the muscle fibers.
机译:5-羟色胺(5-HT)在甲壳类动物中诱发多种生理和行为影响。但是,5-UT用来影响行为改变的机制尚不完全清楚。这些变化可能发生的机制包括突触驱动的改变以及感觉,中间神经元和运动神经元的功效以及对肌肉的直接影响。我们通过使用定义的感觉运动系统来研究这些方面,该系统完全包含在单个腹节中,并且由“表皮感觉神经元-段神经节-腹部浅屈运动神经元-肌肉”回路组成。我们的研究解决了5-UT在改变(1)感觉刺激诱导的运动神经元活动中的作用; (2)浅屈肌运动神经元固有的兴奋性; (3)发射器释放运动神经末梢的特性,以及(4)肌肉的输入阻力。使用来自和不带有感觉刺激的运动神经的被动记录,以及来自肌肉的细胞内记录,我们显示5-HT增强了腹侧神经索的感觉驱动和输出,从而导致运动神经元的放电频率增加。同样,5-UT增加了神经肌肉接头处的递质释放,并改变了肌纤维的输入阻力。

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