Brodfuehrer P D, Friesen W O
J Comp Physiol A. 1986 Oct;159(4):511-9. doi: 10.1007/BF00604171.
In papers I and II of this series, we described two pairs of interneurons, Tr1 and Tr2, in the leech subesophageal ganglion which can trigger swimming activity in the isolated central nervous system (CNS). In this paper, we describe sensory inputs to these trigger neurons from previously identified mechanosensory neurons. We found that: Weak mechanical stimulation (stroking) of a body wall flap attached to a segmental ganglion in an otherwise isolated CNS excites the contralateral Tr1 slightly. Strong mechanical stimulation (pinching) of a mid-body wall flap evokes a burst of impulses in the contralateral Tr1. For both means of stimulation the effects on the ipsilateral Tr1 and on the Tr2 cell pair were much weaker. Stroking a body wall flap attached to the head ganglion (supra- and subesophageal ganglia) in an otherwise isolated CNS excites both Tr1s and both Tr2s, although the effect is weaker for the Tr2s. Pinching strongly excites both trigger neurons bilaterally. Pressure and nociceptive mechanosensory neurons (P and N cells) in the subesophageal ganglion and the first segmental ganglion appear to make direct excitatory synapses with the contralateral Tr1 and Tr2. Mechanosensory interactions with the ipsilateral trigger neurons appear to be indirect. Functional inactivation of Tr1 by hyperpolarization does not prevent swim initiation either by weak mechanical stimulation of a body-wall flap or by intracellular stimulation of P cells.2+ We conclude that the trigger neurons, Tr1 and Tr2, provide an excitatory pathway by which mechanosensory stimulation can initiate leech swimming activity.(ABSTRACT TRUNCATED AT 250 WORDS)
在本系列论文的第一篇和第二篇中,我们描述了水蛭食管下神经节中的两对中间神经元Tr1和Tr2,它们能够在离体中枢神经系统(CNS)中触发游泳活动。在本文中,我们描述了来自先前已确定的机械感觉神经元对这些触发神经元的感觉输入。我们发现:在其他部分均离体的中枢神经系统中,对附着于节段神经节的体壁皮瓣进行弱机械刺激(轻抚)会轻微激发对侧的Tr1。对中体壁皮瓣进行强机械刺激(捏)会在对侧Tr1中引发一阵冲动。对于这两种刺激方式,对同侧Tr1和Tr2细胞对的影响要弱得多。在其他部分均离体的中枢神经系统中,对附着于头部神经节(食管上和食管下神经节)的体壁皮瓣进行轻抚会激发Tr1和Tr2,但对Tr2的影响较弱。强烈捏压会双侧强烈激发这两个触发神经元。食管下神经节和第一节段神经节中的压力和伤害性机械感觉神经元(P细胞和N细胞)似乎与对侧的Tr1和Tr2形成直接兴奋性突触。与同侧触发神经元的机械感觉相互作用似乎是间接的。通过超极化使Tr1功能失活并不能阻止通过对体壁皮瓣的弱机械刺激或通过对P细胞的细胞内刺激来启动游泳。我们得出结论,触发神经元Tr1和Tr2提供了一条兴奋性通路,通过该通路机械感觉刺激可以启动水蛭的游泳活动。(摘要截取自250字)