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断沟龙虾(Panulirus interruptus)胃磨模式发生器神经元的内源性爆发能力。

Endogenous burst capability in a neuron of the gastric mill pattern generator of the spiny lobster Panulirus interruptus.

作者信息

Hartline D K, Russell D F

出版信息

J Neurobiol. 1984 Sep;15(5):345-64. doi: 10.1002/neu.480150505.

Abstract

The gastric system of the lobster stomatogastric ganglion has previously been thought to include no neurons capable of endogenous bursting. We describe conditions under which one of the motorneurons, the CP cell, can burst endogenously in a free-running manner in the absence of other phasic network activity. Isolated preparations of the foregut nervous system were used, and the CP bursting was either spontaneous or was activated by continuous stimulation of an input nerve. Three criteria were applied to establish the endogenous nature of such burst generation in CP: absence of phasic input, reset of the bursting pattern by pulses of current in a characteristic phase-dependent manner, and modulation of burst rate by sustained injected current. (1) The firing of other cells which are known to be related synaptically to CP was monitored in nerve records. These other cells were either silent or fired only tonically. Cross-correlograms showed that CP bursting was not ascribable to phasic activity in these other network cells. (2) A depolarizing current pulse of sufficient strength injected intracellularly between bursts triggered a burst prematurely and reset the subsequent rhythm. A hyperpolarizing pulse during a burst terminated it and reset the subsequent rhythm. Reset behavior was similar to that described for other endogenous bursters. (3) Application of a positive-going ramp current initially caused an increase in burst rate, as described for other endogenous bursters. However, further depolarization caused a slower burst rate due to lengthening of the individual bursts, although mean firing frequency continued to increase throughout the range tested. Such free-running endogenous repetitive bursting appeared to result from the CP's ability to produce slow regenerative depolarizations ("plateau potentials"). When bursting was present, so was the plateau property, as determined by I-V analysis and by the ability of brief current pulses to trigger and terminate bursts. The previous inability to observe endogenous bursting in preparations with central input removed may be due to the usual absence of the plateau property in such preparations. CP bursting during normal gastric mill rhythms, while underlain by plateau potentials, is strongly controlled by network interactions. CP appears not to be well placed in the network to be considered a source of normal gastric rhythmicity. Nevertheless, endogenous bursting in CP may explain some of the partial gastric rhythms seen in behavioral studies, and illustrates one way that cellular properties might contribute to rhythmic behaviors.

摘要

此前人们认为龙虾口胃神经节的胃系统中不存在能够产生内源性爆发式放电的神经元。我们描述了一种情况,即运动神经元之一的CP细胞在没有其他相位性网络活动的情况下能够以自由运转的方式内源性爆发式放电。我们使用了前肠神经系统的离体标本,CP细胞的爆发式放电要么是自发的,要么是通过持续刺激一条输入神经而激活的。我们应用了三个标准来确定CP细胞中这种爆发式放电产生的内源性本质:没有相位性输入、通过在特定相位依赖方式下的电流脉冲重置爆发模式、以及通过持续注入电流调节爆发频率。(1)在神经记录中监测已知与CP细胞有突触联系的其他细胞的放电情况。这些其他细胞要么静止,要么仅持续放电。互相关图显示CP细胞的爆发式放电不能归因于这些其他网络细胞中的相位性活动。(2)在爆发之间向细胞内注入足够强度的去极化电流脉冲会过早触发一次爆发并重置随后的节律。在一次爆发期间施加超极化脉冲会终止该爆发并重置随后的节律。重置行为与其他内源性爆发式放电细胞所描述的行为相似。(3)施加正向斜坡电流最初会导致爆发频率增加,这与其他内源性爆发式放电细胞的情况相同。然而,进一步的去极化会由于单个爆发的延长而导致爆发频率变慢,尽管在整个测试范围内平均放电频率持续增加。这种自由运转的内源性重复爆发式放电似乎是由于CP细胞产生缓慢再生性去极化(“平台电位”)的能力所致。当存在爆发式放电时,平台特性也存在,这是通过电流-电压分析以及短暂电流脉冲触发和终止爆发的能力确定的。之前在去除中枢输入的标本中无法观察到内源性爆发式放电,可能是由于此类标本中通常不存在平台特性。在正常胃磨节律期间CP细胞的爆发式放电虽然以平台电位为基础,但受到网络相互作用的强烈控制。CP细胞在网络中的位置似乎不太适合被视为正常胃节律的来源。然而,CP细胞中的内源性爆发式放电可能解释了行为研究中看到的一些部分胃节律,并说明了细胞特性可能对节律性行为产生影响的一种方式。

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