Malyshev Aleksey Y, Balaban Pavel M
Institute of Higher Nervous Activity and Neurophysiology, Moscow 117485, Russia.
J Neurophysiol. 2002 May;87(5):2364-71. doi: 10.1152/jn.00185.2001.
In this study, we describe the putative mechanosensory neurons, which are involved in the control of avoidance behavior of the terrestrial snail Helix lucorum. These neurons, which were termed pleural ventrolateral (PlVL) neurons, mediated part of the withdrawal response of the animal via activation of the withdrawal interneurons. Between 15 and 30 pleural mechanosensory neurons were located on the ventrolateral side of each pleural ganglion. Intracellular injection of neurobiotin revealed that all PlVL neurons sent their axons into the skin nerves. The PlVL neurons had no spontaneous spike activity or fast synaptic potentials. In the reduced "CNS-foot" preparations, mechanical stimulation of the skin covering the dorsal surface of the foot elicited spikes in the PlVL neurons without any noticeable prepotential activity. Mechanical stimulus-induced action potentials in these cells persisted in the presence of high-Mg(2+)/zero-Ca(2+) saline. Each neuron had oval-shaped receptive field 5-20 mm in length located on the dorsal surface of the foot. Partial overlapping of the receptive fields of different neurons was observed. Intracellular stimulation of the PlVL neurons produced excitatory inputs to the parietal and pleural withdrawal interneurons, which are known to control avoidance behavior. The excitatory postsynaptic potentials (EPSPs) in the withdrawal interneurons were induced in 1:1 ratio to the PlVL neuron spikes, and spike-EPSP latency was short and highly stable. These EPSPs also persisted in the high-Mg(2+)/high-Ca(2+) saline, suggesting monosynaptic connections. All these data suggest that PlVL cells were the primary mechanosensory neurons.
在本研究中,我们描述了参与控制陆生蜗牛亮大蜗牛回避行为的假定机械感觉神经元。这些神经元被称为胸膜腹外侧(PlVL)神经元,通过激活退缩中间神经元介导动物的部分退缩反应。每个胸膜神经节的腹外侧有15至30个胸膜机械感觉神经元。细胞内注射神经生物素显示,所有PlVL神经元都将其轴突发送到皮神经中。PlVL神经元没有自发的峰电位活动或快速突触电位。在简化的“中枢神经系统-足部”标本中,对覆盖足部背表面的皮肤进行机械刺激可在PlVL神经元中引发峰电位,而没有任何明显的电位前活动。在高镁/零钙盐溶液存在的情况下,这些细胞中机械刺激诱导的动作电位持续存在。每个神经元在足部背表面有一个椭圆形的感受野,长度为5至20毫米。观察到不同神经元的感受野有部分重叠。对PlVL神经元进行细胞内刺激会向已知控制回避行为的顶叶和胸膜退缩中间神经元产生兴奋性输入。退缩中间神经元中的兴奋性突触后电位(EPSP)与PlVL神经元峰电位以1:1的比例诱导产生,峰电位-EPSP潜伏期短且高度稳定。这些EPSP在高镁/高钙盐溶液中也持续存在,表明存在单突触连接。所有这些数据表明PlVL细胞是主要的机械感觉神经元。