首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Identification of two types of synaptic activity in the earthworm nervous system during locomotion.
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Identification of two types of synaptic activity in the earthworm nervous system during locomotion.

机译:在运动过程中神经系统中两种类型的突触活动的识别。

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摘要

In the ventral nervous system of the earthworm, a central pattern generator and motor neurons are activated during locomotion. We have previously reported that bath application of octopamine (OA) induces fictive locomotion in the earthworm, and the burst frequency of electrical activity from the first lateral nerves increases with OA concentration. However, there are no reports concerning locomotor neural networks in the earthworm. To identify neural networks involved in fictive locomotion, we optically monitored activity-dependent fluorescent staining in the earthworm ventral nerve cord (VNC) with a styryl dye, N-(3-triethylammoniumpropyl)-4-(4-(dibutylamino)styryl)pyridinium dibromide (FM1-43), and a confocal laser scanning microscope. OA induces FM1-43 fluorescence in a dose-dependent manner, with bright fluorescent spots of 3-10 microm in diameter observed to be localized around specified neurons in the segmental ganglion of the VNC. We compared OA dose-response curves for FM1-43 fluorescence with the bursting frequency for fictive locomotion, and found that two types of curves could be identified: one fluorescence response shows a similar dose-dependency to that of the burst frequency, while another response has a higher sensitivity to OA. From these results, we suggest that OA acts as one of the neuromodulators for the earthworm locomotion. This is the first attempt to record motor and inter-neuronal activities simultaneously in a locomotor network in the earthworm.
机译:在worm的腹神经系统中,运动过程中激活了中央模式发生器和运动神经元。我们以前曾报道过,洗澡中使用章鱼胺(OA)会引起worm的虚构运动,并且随着OA浓度的增加,来自第一侧神经的电活动的爆发频率也会增加。但是,没有关于concerning中运动神经网络的报道。为了确定参与虚构运动的神经网络,我们用苯乙烯基染料N-(3-三乙基铵丙基)-4-(4-(二丁基氨基)苯乙烯基)吡啶光学监测了nerve腹神经索(VNC)中的依赖于活性的荧光染色二溴化物(FM1-43)和共聚焦激光扫描显微镜。 OA以剂量依赖性方式诱导FM1-43荧光,观察到直径3-10微米的明亮荧光斑点位于VNC的节神经节中特定神经元周围。我们将FM1-43荧光的OA剂量响应曲线与虚拟运动的猝发频率进行了比较,发现可以识别出两种类型的曲线:一种荧光响应显示出与猝发频率相似的剂量依赖性,而另一种响应对OA具有更高的敏感性。从这些结果,我们建议OA充当worm运动的神经调节剂之一。这是首次在worm的运动网络中同时记录运动和神经元间活动的尝试。

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