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麻醉大鼠颈上神经节神经元突触事件的周期性分析。

Analysis of the periodicity of synaptic events in neurones in the superior cervical ganglion of anaesthetized rats.

作者信息

McLachlan E M, Habler H J, Jamieson J, Davies P J

机构信息

Prince of Wales Medical Research Institute, Randwick, NSW 2031, Australia

出版信息

J Physiol. 1998 Sep 1;511 ( Pt 2)(Pt 2):461-78. doi: 10.1111/j.1469-7793.1998.461bh.x.

Abstract
  1. The patterns of on-going synaptic events recorded intracellularly in neurones of superior cervical ganglia (SCG)of anaesthetized female rats were analysed by constructing inter-event interval histograms, autocorrelograms, ln-survivor curves and histograms triggered by the arterial pulse wave and by the intercostal EMG. 2. In 11/12 cells with on-going frequencies > 0.5 Hz, one or two inputs were strong (i.e. always suprathreshold). In five cells, action potentials also arose from synaptic potentials with amplitudes close to threshold. 3. Synaptic events in 5/11 neurones tested were phase-related to the arterial pressure wave (i.e. had cardiac rhythmicity, CR). 4. Synaptic events in 9/10 neurones tested (including all with CR) were phase-related to the intercostal EMG and/or their autocorrelograms showed peaks at multiples of the respiratory interval (i.e. had respiratory rhythmicity, RR). 5. The intervals between all synaptic events were exponentially distributed in 8/12 neurones although intervals between single strong events showed peaks related to the respiratory cycle. Bursts occurred only by chance. 6. Event patterns could be simulated by combining events from several respiration-modulated inputs with their timing distributed over nearly half the cycle. From the simulations, the mean number of active preganglionic inputs was estimated to be approximately 6 with mean discharge frequency approximately 0.4 Hz. 7. We conclude that, in the spontaneously breathing anaesthetized rat, most preganglionic neurones to the SCG fire with relatively low probability in relation to the respiratory cycle. Rhythms in a postganglionic neurone reflect the activity of its suprathreshold preganglionic inputs.
摘要
  1. 通过构建事件间隔直方图、自相关图、自然对数存活曲线以及由动脉脉搏波和肋间肌肌电图触发的直方图,对麻醉雌性大鼠颈上神经节(SCG)神经元细胞内记录的持续突触事件模式进行了分析。2. 在12个持续频率>0.5Hz的细胞中,有11个细胞有一或两个输入较强(即总是超阈值)。在5个细胞中,动作电位也由幅度接近阈值的突触电位产生。3. 在测试的11个神经元中,有5个神经元的突触事件与动脉压力波呈相位相关(即具有心脏节律性,CR)。4. 在测试的10个神经元中,有9个神经元(包括所有具有CR的神经元)的突触事件与肋间肌肌电图呈相位相关和/或其自相关图在呼吸间隔的倍数处出现峰值(即具有呼吸节律性,RR)。5. 在12个神经元中的8个,所有突触事件之间的间隔呈指数分布,尽管单个强事件之间的间隔显示出与呼吸周期相关的峰值。爆发仅偶然发生。6. 通过组合来自几个呼吸调制输入的事件,其时间分布在近半个周期内,可以模拟事件模式。从模拟中估计,节前活跃输入的平均数量约为6,平均放电频率约为 Hz。7. 我们得出结论,在自主呼吸的麻醉大鼠中,大多数支配SCG的节前神经元相对于呼吸周期以相对较低的概率发放冲动。节后神经元的节律反映了其超阈值节前输入的活动。

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