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豚鼠小肠形态学和化学特性明确的肌间神经元快速兴奋性突触输入的电生理图谱。

Electrophysiological mapping of fast excitatory synaptic inputs to morphologically and chemically characterized myenteric neurons of guinea-pig small intestine.

作者信息

Stebbing M J, Bornstein J C

机构信息

Department of Physiology, University of Melbourne, Parkville, Vic, Australia.

出版信息

Neuroscience. 1996 Aug;73(4):1017-28. doi: 10.1016/0306-4522(96)00121-2.

Abstract

Neurons within the myenteric plexus of the guinea-pig ileum were impaled using conventional intracellular electrodes. Points of stimulation within the surrounding ganglia and connectives which gave rise to fast excitatory synaptic potentials were mapped using a movable monopolar stimulating electrode. Cells were then injected with the intracellular marker, biocytin, and processed for multiple label immunohistochemistry to reveal their morphologies, chemical contents and, hence, their functional classes. Of 65 neurons belonging to the S electrophysiological class, 53 received fast excitatory synaptic inputs from stimulation at sites at least 2 mm away in a directly circumferential direction. These inputs almost certainly arise from stimulation of the circumferentially-directed axons of the Dogiel type II/AH-neurons, which are thought to be intrinsic sensory neurons. The majority of cells which projected anally and were immunoreactive for nitric oxide synthase (19/25), all neurons which ramified in the tertiary plexus and were identified as longitudinal muscle motor neurons (6/6) and all neurons identified as excitatory motor neurons innervating the circular muscle (12/12) received inputs from these circumferentially-directed pathways. However only one of six descending filamentous interneurons impaled received such inputs, suggesting they may be differentially innervated. The conduction velocities of circumferentially-directed axons giving rise to fast excitatory post synaptic potentials were estimated to be 0.41 +/- 0.10 m/s (mean +/- standard deviation, n = 21). The conduction velocities estimated for longitudinally-directed pathways were 0.55 +/- 0.25 m/s (n = 29). Thus, the majority of myenteric neurons receive fast excitatory synaptic input from putative intrinsic sensory neurons which project circumferentially around the intestine.

摘要

使用传统的细胞内电极刺入豚鼠回肠肌间神经丛内的神经元。使用可移动的单极刺激电极,绘制周围神经节和结缔组织内产生快速兴奋性突触电位的刺激点。然后向细胞内注射细胞内标记物生物素,并进行多重标记免疫组织化学处理,以揭示它们的形态、化学内容,从而确定它们的功能类别。在属于S电生理类别的65个神经元中,53个在直接圆周方向上至少距离刺激部位2毫米处接收到快速兴奋性突触输入。这些输入几乎肯定来自对Dogiel II型/AH神经元圆周方向轴突的刺激,这些神经元被认为是内在感觉神经元。大多数向肛门投射且对一氧化氮合酶呈免疫反应的细胞(19/25)、所有在三级神经丛中分支并被鉴定为纵肌运动神经元的神经元(6/6)以及所有被鉴定为支配环肌的兴奋性运动神经元的神经元(12/12)都接收到来自这些圆周方向通路的输入。然而,刺入的六个下行丝状中间神经元中只有一个接收到此类输入,这表明它们可能接受不同的神经支配。产生快速兴奋性突触后电位的圆周方向轴突的传导速度估计为0.41±0.10米/秒(平均值±标准差,n = 21)。纵向通路的传导速度估计为0.55±0.25米/秒(n = 29)。因此,大多数肌间神经元从假定的内在感觉神经元接收快速兴奋性突触输入,这些内在感觉神经元围绕肠道圆周方向投射。

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