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首页> 外文期刊>Journal of Neurophysiology >Dual modulatory effects on feedback from a proprioceptor in the crustacean stomatogastric nervous system.
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Dual modulatory effects on feedback from a proprioceptor in the crustacean stomatogastric nervous system.

机译:对甲壳类动物神经系统中的甲壳类动物的反馈反馈的双重调制效应。

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Neuromodulatory actions that change the properties of proprioceptors or the muscle movements to which they respond necessarily affect the feedback provided to the central network. Here we further characterize the responses of the gastropyloric receptor 1 (GPR1) and gastropyloric receptor 2 (GPR2) neurons in the stomatogastric nervous system of the crab Cancer borealis to movements and contractions of muscles, and we report how neuromodulation modifies those responses. We observed that the GPR1 response to contractions of the gastric mill 4 muscle (gm4) was absent, or nearly so, when the neuron was quiescent but robust when it was spontaneously active. We also found that the effects of four neuromodulatory substances (GABA, serotonin, proctolin, and TNRNFLRFamide) on the GPR1 response to muscle stretch were similar to those previously reported for GPR2. Finally, we showed that an excitatory action on gm4 due to proctolin combined with an inhibitory action on GPR2 due to GABA can allow for larger muscle contractions without increased proprioceptive feedback. NEW & NOTEWORTHY We report that the combination of GABA and the peptide proctolin increases contraction of a stomatogastric muscle while decreasing the corresponding response of the proprioceptor that reports on it. These results suggest a general mechanism by which muscle movements can be modified while sensory feedback is conserved, one that may be particularly well suited for providing flexibility to central pattern generator networks.
机译:改变本体感受器特性或其响应的肌肉运动的神经调节动作必然会影响提供给中枢网络的反馈。在此,我们进一步描述了北蟹口腹神经系统中胃幽门受体1(GPR1)和胃幽门受体2(GPR2)神经元对肌肉运动和收缩的反应,并报告了神经调节如何改变这些反应。我们观察到,当神经元处于静止状态时,GPR1对胃第四磨坊肌(gm4)收缩的反应不存在,或者几乎没有,但当神经元自发活动时,GPR1反应强烈。我们还发现,四种神经调节物质(GABA、5-羟色胺、促甲状腺素和TNRNFLRFamide)对GPR1肌肉拉伸反应的影响与之前报道的GPR2类似。最后,我们表明,前托林对gm4的兴奋作用与GABA对GPR2的抑制作用相结合,可以在不增加本体感觉反馈的情况下实现更大的肌肉收缩。新的和值得注意的是,我们报告说,GABA和肽前托林的结合增加了口腹肌的收缩,同时降低了报告其本体感受器的相应反应。这些结果表明了一种普遍的机制,通过这种机制可以在保留感觉反馈的同时改变肌肉运动,这种机制可能特别适合为中央模式生成器网络提供灵活性。

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