Herberholz Jens, Antonsen Brian L, Edwards Donald H
Department of Biology, Georgia State University, Atlanta, Georgia 30302-4010, USA.
J Neurosci. 2002 Oct 15;22(20):9078-85. doi: 10.1523/JNEUROSCI.22-20-09078.2002.
A phasic stimulus directed to the rear of a crayfish (Procambarus clarkii) creates mechanosensory input to the lateral giant (LG) interneuron, a command neuron for escape. A single LG spike is necessary and sufficient to produce a highly stereotyped tail flip that thrusts the animal away from the source of stimulation. Here we describe a lateral excitatory network among primary afferent axons in the last abdominal ganglion of crayfish that produces nonlinear amplification of the sensory input to the command circuitry for escape. The lateral excitation is mediated by electrical synapses between central terminals of primary mechanosensory afferents. The network enables stimulated afferents to recruit unstimulated afferents that contribute additional input to LG and to mechanosensory interneurons that also converge on LG. When depolarized, the LG neuron increases its own inputs from primary afferents and primary interneurons by facilitating the recruitment of both. Conversely, hyperpolarization of LG reduces the excitability of primary afferents and primary interneurons. The crayfish's decision to escape, previously thought to lie exclusively in the synaptic integrative properties of LG, is now seen to depend on the interactions between LG dendritic postsynaptic potentials and the responses of primary afferent terminals in the lateral excitatory network.
针对小龙虾(克氏原螯虾)尾部的阶段性刺激会向外侧巨(LG)中间神经元产生机械感觉输入,LG中间神经元是一种用于逃逸的指令神经元。单个LG尖峰对于产生将动物从刺激源推开的高度刻板的尾部翻转是必要且充分的。在这里,我们描述了小龙虾最后一个腹神经节中初级传入轴突之间的侧向兴奋性网络,该网络对逃逸指令电路的感觉输入产生非线性放大。侧向兴奋由初级机械感觉传入神经元的中枢终末之间的电突触介导。该网络使受刺激的传入神经元能够募集未受刺激的传入神经元,这些未受刺激的传入神经元会向LG以及也汇聚于LG的机械感觉中间神经元贡献额外的输入。当LG神经元去极化时,它会通过促进两者的募集来增加来自初级传入神经元和初级中间神经元的自身输入。相反,LG的超极化会降低初级传入神经元和初级中间神经元的兴奋性。小龙虾逃逸的决定,以前被认为完全取决于LG的突触整合特性,现在看来取决于LG树突突触后电位与侧向兴奋性网络中初级传入终末反应之间的相互作用。