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裸背电鳗目电鱼中起搏前核的解剖学和功能组织:一个核中两种行为的调节。

Anatomical and functional organization of the prepacemaker nucleus in gymnotiform electric fish: the accommodation of two behaviors in one nucleus.

作者信息

Kawasaki M, Maler L, Rose G J, Heiligenberg W

机构信息

Scripps Institution of Oceanography, University of California at San Diego, La Jolla 92093.

出版信息

J Comp Neurol. 1988 Oct 1;276(1):113-31. doi: 10.1002/cne.902760108.

Abstract

The diencephalic prepacemaker nucleus (PPn) of gymnotiform electric fish projects to the medullary pacemaker nucleus and modulates its regular firing frequency. Each firing of the pacemaker, in turn, drives an electric organ discharge (EOD). Two types of PPn neurons were retrogradely labeled from the pacemaker with HRP in Eigenmannia and Apteronotus. In both species, smaller ovoidal cells were found in the dorsomedial part of the PPn (PPn-G), and larger multipolar cells were found in the ventrolateral part of the PPn (PPn-C). This morphological distinction between the two subnuclei in the PPn was paralleled by a functional dichotomy. Microiontophoresis of L-glutamate in the PPn-G of both species elicited slow and gradual accelerations of EOD frequency characterized by a time constant on the order of seconds. The elicited frequency modulations were similar to those observed during the jamming avoidance response and during courtship. Glutamate stimulation of the PPn-C, in contrast, produced fast and abrupt frequency modulations characterized by a time constant on the order of milliseconds. These abrupt modulations resembled "chirps" observed during courtship and aggression. Similar behavior was produced by intracellular current injection into a PPn-C neuron of Apteronotus, and intracellular labeling of this neuron with Lucifer Yellow revealed a multipolar PPn-C neuron similar to those retrogradely labeled with HRP.

摘要

裸背电鳗目电鱼的间脑前起搏器核(PPn)投射到延髓起搏器核,并调节其正常放电频率。起搏器的每次放电依次驱动电器官放电(EOD)。在裸臀鱼和翎电鳗中,用辣根过氧化物酶(HRP)从起搏器逆行标记了两种类型的PPn神经元。在这两个物种中,在PPn的背内侧部分发现了较小的卵圆形细胞(PPn-G),在PPn的腹外侧部分发现了较大的多极细胞(PPn-C)。PPn中这两个亚核之间的这种形态学差异与功能二分法相对应。在这两个物种的PPn-G中微量离子导入L-谷氨酸会引起EOD频率缓慢而逐渐的加速,其时间常数约为秒级。诱发的频率调制类似于在避免干扰反应和求偶期间观察到的调制。相比之下,谷氨酸对PPn-C的刺激产生快速而突然的频率调制,其时间常数约为毫秒级。这些突然的调制类似于在求偶和攻击期间观察到的“啁啾声”。向翎电鳗的一个PPn-C神经元内注射电流也产生了类似的行为,用荧光黄对该神经元进行细胞内标记,发现了一个多极的PPn-C神经元,类似于用HRP逆行标记的神经元。

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