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泥螈(Necturus maculosus)副交感神经心脏神经节中神经元化学突触和电突触的电生理研究:神经节内源性神经支配的证据

An electrophysiological study of chemical and electrical synapses on neurones in the parasympathetic cardiac ganglion of the mudpuppy, Necturus maculosus: evidence for intrinsic ganglionic innervation.

作者信息

Roper S

出版信息

J Physiol. 1976 Jan;254(2):427-54. doi: 10.1113/jphysiol.1976.sp011239.

Abstract
  1. The cardiac ganglion of the mudpuppy is situated on a thin sheet of tissue. Two nerve cell types can be distinguished readily in the living preparation - principal cells and smaller interneurones which synapse with the principal cells. The purpose of this study was to investigate synaptic transmission and the functional organization of neuronal connections of ganglion cells with intracellular micro-electrodes. 2. Stimulation of the preganglionic, vagus, nerves evoked a large excitatory response in principal cells. About three quarters of these neurones were innervated by a single vagal axon. The remaining cells received two or more preganglionic nerve fibres. 3. The quantum content of vagal excitatory post-synaptic potentials (e.p.s.p.s) was measured. Normally, the e.p.s.p. was suprathreshold and consisted of about twenty-two quanta, whereas only about nine quanta were required to reach threshold and initiate an action potential. 4. Intracellular stimulation of principal cells evoked e.p.s.p.s in neighbouring principal cells. The responses were blocked by cholinergic antagonists. These potentials were caused by excitation of principal cell axon collateral synapses. 5. Principal cells also formed electrical junctions with each other. These electrical junctions were very weak. Although they transmitted slow potential changes, only a small response was recorded in one cell when an electrically coupled neighbouring cell fired an impulse. The resistance of the electrical junction between principal cells was calculated to be about 5-8 X 10(8) omega. 6. Stable penetrations of interneurones were only rarely achieved, making it difficult to study their functional relationship to principal cells. Action potentials were recorded from interneurones in a few instances. 7. These data demonstrate that parasympathetic ganglion cells in the heart of the mudpuppy receive innervation from more than one source involving both chemical and electrical synapses, and that some of the synapses are intrinsic to the ganglion.
摘要
  1. 泥螈的心脏神经节位于一片薄组织上。在活体标本中可以很容易地分辨出两种神经细胞类型——主细胞和与主细胞形成突触的较小的中间神经元。本研究的目的是用细胞内微电极研究神经节细胞的突触传递和神经元连接的功能组织。2. 刺激节前迷走神经会在主细胞中引发大的兴奋性反应。这些神经元中约四分之三由单个迷走神经轴突支配。其余细胞接受两条或更多节前神经纤维。3. 测量了迷走神经兴奋性突触后电位(e.p.s.p.s)的量子含量。正常情况下,e.p.s.p. 是阈上的,由约二十二个量子组成,而达到阈值并引发动作电位仅需约九个量子。4. 对主细胞进行细胞内刺激会在相邻主细胞中引发e.p.s.p.s。这些反应被胆碱能拮抗剂阻断。这些电位是由主细胞轴突侧支突触的兴奋引起的。5. 主细胞之间也形成电突触。这些电突触非常弱。尽管它们传递缓慢的电位变化,但当一个电耦合的相邻细胞发放冲动时,在一个细胞中仅记录到小的反应。主细胞之间电突触的电阻计算约为5 - 8×10⁸欧姆。6. 很少能稳定地刺入中间神经元,这使得研究它们与主细胞的功能关系变得困难。在少数情况下从中间神经元记录到了动作电位。7. 这些数据表明,泥螈心脏中的副交感神经节细胞接受来自不止一个来源的神经支配,涉及化学突触和电突触,并且一些突触是神经节固有的。

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