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水蛭中枢神经系统中皮肤机械感受器神经元之间的化学性和电性突触连接

Chemical and electrical synaptic connexions between cutaneous mechanoreceptor neurones in the central nervous system of the leech.

作者信息

Baylor D A, Nicholls J G

出版信息

J Physiol. 1969 Aug;203(3):591-609. doi: 10.1113/jphysiol.1969.sp008881.

Abstract

Experiments have been made to study the synaptic connexions between sensory cells in the C.N.S. of the leech. Each segmental ganglion contains six neurones that respond specifically to light touch applied to the skin; each of these ;touch cells' innervates a discrete area on the surface of the body and has a characteristic set of properties by which it can be recognized. Using intracellular electrodes it has been shown that these sensory cells interact with one another through chemical and electrical synapses by way of a stereotyped set of pathways.1. Action potentials occurring in one touch cell gave rise to synaptic potentials in the five other touch cells in the same ganglion and also in the three ipsilateral touch cells in the adjacent ganglia. Thus, synaptic interactions took place between sensory cells whose receptive fields lay within the same segment and on the same side of adjacent segments.2. The post-synaptic potentials consisted of a short-latency coupling potential, followed by an excitatory potential and a number of inhibitory potentials. These delayed synaptic potentials occurred inconsistently and with a variable latency; they could also be recorded in the cell which had been stimulated. All of the touch cells appeared to be equally effective in initiating synaptic potentials.3. The short-latency coupling potential was shown to be mediated through an electrical synapse by observing a voltage change in one touch cell when current was injected into its neighbour. It was not abolished by high concentrations of Mg in the bathing fluid, which blocked chemical synapses in this ganglion. This electrical synapse displayed remarkable rectification; a depolarization could spread from cell to cell in both directions, while a hyperpolarization could spread in neither.4. The inhibitory potentials were reversed by injecting Cl into the cell. In Cl-free Ringer solution this effect was so marked that the reversed IPSPs caused long trains of impulses in touch cells, which tended to excite each other by a process of positive feed-back.5. Synaptic potentials evoked by activation of a touch cell did not usually reach threshold since excitation and inhibition tended to cancel. The connexions between touch cells that mediated the delayed excitatory and inhibitory potentials are polysynaptic; the interneurones have not yet been found but some of their connexions could be inferred from electrical recordings.6. Action potentials in sensory cells of a different modality (responding to pressure) also initiated synaptic potentials in the same family of touch cells.7. The possible significance for integration of these synaptic interactions between sensory cells is discussed.

摘要

已经开展了实验来研究水蛭中枢神经系统中感觉细胞之间的突触连接。每个节段神经节包含六个神经元,它们对施加于皮肤的轻触有特异性反应;这些“触觉细胞”中的每一个都支配身体表面的一个离散区域,并且具有一组可用于识别它的特征性属性。使用细胞内电极已表明,这些感觉细胞通过一组固定的途径,通过化学和电突触相互作用。1. 一个触觉细胞中产生的动作电位会在同一神经节中的其他五个触觉细胞以及相邻神经节中的三个同侧触觉细胞中引发突触电位。因此,感受野位于同一节段内以及相邻节段同一侧的感觉细胞之间发生了突触相互作用。2. 突触后电位包括一个短潜伏期耦合电位,随后是一个兴奋性电位和一些抑制性电位。这些延迟的突触电位出现不一致且潜伏期可变;它们也可以在被刺激的细胞中记录到。所有的触觉细胞在引发突触电位方面似乎同样有效。3. 通过观察当向其相邻细胞注入电流时一个触觉细胞中的电压变化,表明短潜伏期耦合电位是通过电突触介导的。它不会被浴液中高浓度的镁所消除,而镁会阻断该神经节中的化学突触。这种电突触表现出显著的整流作用;去极化可以在两个方向上从一个细胞传播到另一个细胞,而超极化则不能。4. 通过向细胞内注入氯离子可使抑制性电位反转。在无氯的林格氏溶液中,这种效应非常明显,以至于反转的抑制性突触后电位在触觉细胞中引发长串冲动,这些冲动倾向于通过正反馈过程相互兴奋。5. 由于兴奋和抑制往往相互抵消,由触觉细胞激活引发的突触电位通常不会达到阈值。介导延迟兴奋性和抑制性电位的触觉细胞之间的连接是多突触的;中间神经元尚未被发现,但它们的一些连接可以从电记录中推断出来。6. 不同模态(对压力作出反应)的感觉细胞中的动作电位也会在同一组触觉细胞中引发突触电位。7. 讨论了这些感觉细胞之间突触相互作用对整合的可能意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/64a1/1351532/2e37f3b18fd6/jphysiol01075-0098-a.jpg

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