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豚鼠心脏神经丛中不同类型的神经节细胞。

Different types of ganglion cell in the cardiac plexus of guinea-pigs.

作者信息

Edwards F R, Hirst G D, Klemm M F, Steele P A

机构信息

Department of Zoology, University of Melbourne, Parkville, Victoria, Australia.

出版信息

J Physiol. 1995 Jul 15;486 ( Pt 2)(Pt 2):453-71. doi: 10.1113/jphysiol.1995.sp020825.

Abstract
  1. Intracellular recordings were made from the parasympathetic ganglion cells that lie in the epicardium of the left atrium of guinea-pig heart near the interatrial septum. 2. Three distinct types of neurone were identified on the basis of their electrophysiological properties. In one group of neurones, S cells, somatic action potentials were followed by brief after-hyperpolarizations. In the other two sets of neurones, somatic action potentials were followed by prolonged after-hyperpolarizations. The neurones with prominent after-hyperpolarization were further subdivided: one group of neurones, P cells, showed inward rectification at membrane potentials near the resting membrane potential whilst neurones in the other group, SAH cells, did so only at more negative potentials. 3. In the group of neurones that displayed inward rectification at potentials near rest, rectification resulted from the activation of an inward current, which resembled the hyperpolarization-activated inward current present in cardiac muscle pacemaker cells. 4. The three different types of neurone received different patterns of synaptic input. Each SAH cell received a synaptic excitatory connection from the vagus which in most cells released sufficient transmitter to initiate an action potential in that cell; several SAH cells also received a separate connection, which could be activated by local stimulation. Although most S cells failed to receive a synaptic input from the vagus, all of those tested received an excitatory synaptic input which could be activated by local stimulation. Virtually all P cells failed to receive a synaptic input from the vagus; in addition, local stimulation failed to initiate synaptic potentials in P cells. 5. When the structure of cardiac ganglion cells was determined, by loading the cells with either biocytin or neurobiotin, it was found that most cells lacked extensive dendritic processes. S cells were invariably monopolar, most P cells were dipolar or pseudodipolar, whereas many SAH cells were multipolar. 6. In many neurones an on-going discharge of action potentials was detected in the absence of obvious stimulation. In S and SAH cells, the action potentials resulted from an on-going discharge of excitatory synaptic potentials. However, when a spontaneous discharge of action potentials was detected in P cells a discharge of excitatory synaptic potentials was not detected. 7. The results are discussed in relation to the idea that the three different types of cell may have different functions and that some of the cells may be organized in such a way as to permit the local handling of neuronal information within the heart.
摘要
  1. 细胞内记录是从位于豚鼠心脏左心房心外膜、靠近房间隔的副交感神经节细胞进行的。2. 根据电生理特性鉴定出三种不同类型的神经元。在一组神经元(S细胞)中,体细胞动作电位之后是短暂的超极化后电位。在另外两组神经元中,体细胞动作电位之后是延长的超极化后电位。具有明显超极化后电位的神经元进一步细分:一组神经元(P细胞)在接近静息膜电位的膜电位处表现出内向整流,而另一组神经元(SAH细胞)仅在更负的电位处表现出内向整流。3. 在静息电位附近表现出内向整流的那组神经元中,整流是由内向电流的激活引起的,该内向电流类似于存在于心肌起搏细胞中的超极化激活内向电流。4. 三种不同类型的神经元接受不同模式的突触输入。每个SAH细胞从迷走神经接受一个突触兴奋性连接,在大多数细胞中,该连接释放足够的递质以在该细胞中引发动作电位;几个SAH细胞还接受一个单独的连接,该连接可通过局部刺激激活。虽然大多数S细胞未从迷走神经接受突触输入,但所有测试的S细胞都接受一个可通过局部刺激激活的兴奋性突触输入。几乎所有P细胞都未从迷走神经接受突触输入;此外,局部刺激未能在P细胞中引发突触电位。5. 当通过用生物素或神经生物素加载细胞来确定心脏神经节细胞的结构时,发现大多数细胞缺乏广泛的树突状突起。S细胞总是单极的,大多数P细胞是双极或假双极的,而许多SAH细胞是多极的。6. 在许多神经元中,在没有明显刺激的情况下检测到动作电位的持续发放。在S细胞和SAH细胞中,动作电位由兴奋性突触电位的持续发放引起。然而,当在P细胞中检测到动作电位的自发放电时,未检测到兴奋性突触电位的发放。7. 结合三种不同类型细胞可能具有不同功能以及某些细胞可能以允许在心脏内局部处理神经元信息的方式组织的观点对结果进行了讨论。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/262e/1156534/945deb5d08c5/jphysiol00316-0187-a.jpg

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