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首页> 外文期刊>The Journal of Experimental Biology >Beyond the entral pattern generator: amine modulation of decision-making neural pathways descending from the brain of the medicinal leech
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Beyond the entral pattern generator: amine modulation of decision-making neural pathways descending from the brain of the medicinal leech

机译:超越中央模式发生器:胺调节从药用水ech的大脑传出的决策神经通路

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The biological mechanisms of behavioral selection, as it relates to locomotion, are far from understood, even in relatively simple invertebrate animals. In the medicinal leech, Hirudo medicinalis, the decision to swim is distributed across populations of swim-activating and swim-inactivating neurons descending from the subesophageal ganglion of the compound cephalic ganglion, i.e. the brain. In the present study, we demonstrate that the serotonergic LL and Retzius cells in the brain are excited by swim-initiating stimuli and during spontaneous swim episodes. This activity likely influences or resets the neuromodulatory state of neural circuits involved in the activation or subsequent termination of locomotion. When serotonin (5-HT) was perfused over the brain, multi-unit recordings from descending brain neurons revealed rapid and substantial alterations. Subsequent intracellular recordings from identified command-like brain interneurons demonstrated that 5-HT, especially in combination with octopamine, inhibited swim-triggering neuron Tr1, as well as swim-inactivating neurons Tr2 and SIN1. Although 5-HT inhibited elements of the swim-inactivation pathway, rather than promoting them, the indirect and net effect of the amine was a reliable and sustained reduction in the firing of the segmental swim-gating neuron 204. This modulation caused cell 204 to relinquish its excitatory drive to the swim central pattern generator. The activation pattern of serotonergic brain neurons that we observed during swimming and the 5-HT-immunoreactive staining pattern obtained, suggest that within the head brain 5-HT secretion is massive. Over time, 5-HT secretion may provide a homeostatic feedback mechanism to limit swimming activity at the level of the head brain.
机译:甚至在相对简单的无脊椎动物中,与运动有关的行为选择的生物学机制也远未弄清楚。在药用水echHirudo medicinalis中,游泳的决定分布在从复合头神经节的食管下神经节(即大脑)降落的可激活和不激活神经的人群中。在本研究中,我们证明了大脑中的血清素能性LL和Retzius细胞受到游泳引发刺激和自发性游泳发作的刺激。这种活动可能会影响或重置参与运动的激活或随后终止的神经回路的神经调节状态。当将5-羟色胺(5-HT)灌注到大脑时,降级的大脑神经元的多单位记录显示出快速而实质的改变。随后从已识别的类似命令的大脑中枢神经元的细胞内记录显示,5-HT(特别是与章鱼胺联合使用)抑制了触发游泳的神经元Tr1以及使游泳失活的神经元Tr2和SIN1。尽管5-HT抑制了游泳失活途径的元素,而不是促进了它们的生长,但胺的间接作用和净作用是可靠且持续地减少了分段游泳门控神经元204的放电。这种调节导致细胞204放弃对游泳中央模式发生器的兴奋性驱动。我们在游泳过程中观察到的血清素能神经元神经元的激活模式和获得的5-HT免疫染色模式表明,在头部大脑中5-HT的分泌量很大。随着时间的流逝,5-HT的分泌可能会提供一种稳态反馈机制,以限制头部大脑水平的游泳活动。

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