Blitz D M, Nusbaum M P
Department of Neuroscience, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania 19104, USA.
J Neurosci. 1997 Jul 1;17(13):4965-75. doi: 10.1523/JNEUROSCI.17-13-04965.1997.
Motor pattern selection from a multifunctional neural network often results from direct synaptic and modulatory actions of different projection neurons onto neural network components. Less well documented is the presence and function of interactions among distinct projection neurons innervating the same network. In the stomatogastric nervous system of the crab Cancer borealis, several distinct projection neurons that influence the pyloric and gastric mill rhythms have been studied. These rhythms are generated by overlapping subsets of identified neurons in the stomatogastric ganglion (STG). One of these identified projection neurons is the modulatory proctolin neuron (MPN). We showed previously that MPN stimulation excites the pyloric rhythm by its excitatory actions on STG neurons. In contrast to its excitatory actions on the pyloric rhythm, we have now found that MPN inhibits the gastric mill rhythm. This inhibition does not occur within the STG, but instead results from MPN-mediated inhibition of two previously identified projection neurons within the commissural ganglia. These projection neurons innervate the STG and, via their actions on STG neurons, they elicit the gastric mill rhythm as well as modify the pyloric rhythm in a manner distinct from MPN. By inhibiting these projection neurons, MPN removes excitatory drive to gastric mill neurons and elicits an MPN-specific pyloric rhythm. Motor pattern selection by MPN therefore results from both a direct modulation of STG network activity and an inhibition of competing pathways.
从多功能神经网络中选择运动模式通常源于不同投射神经元对神经网络组件的直接突触作用和调制作用。关于支配同一网络的不同投射神经元之间相互作用的存在和功能,文献记载较少。在北方黄道蟹的口胃神经系统中,已经对几种影响幽门和胃磨节律的不同投射神经元进行了研究。这些节律是由口胃神经节(STG)中已识别神经元的重叠子集产生的。其中一个已识别的投射神经元是调制性促肠肌肽神经元(MPN)。我们之前表明,MPN刺激通过其对STG神经元的兴奋作用来激发幽门节律。与其对幽门节律的兴奋作用相反,我们现在发现MPN抑制胃磨节律。这种抑制并非发生在STG内,而是由MPN介导的对联合神经节内两个先前已识别的投射神经元的抑制所致。这些投射神经元支配STG,并通过它们对STG神经元的作用,以一种不同于MPN的方式引发胃磨节律并改变幽门节律。通过抑制这些投射神经元,MPN消除了对胃磨神经元的兴奋驱动,并引发了MPN特异性的幽门节律。因此,MPN对运动模式的选择既源于对STG网络活动的直接调制,也源于对竞争通路的抑制。