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彼得氏裸臀鱼(Gnathonemus petersii)的电感应系统:特别关注快速传导通路。

Electrosensory systems in the mormyrid fish, Gnathonemus petersii : special emphasis on the fast conducting pathway.

作者信息

Szabo T, Enger P S, Libouban S

出版信息

J Physiol (Paris). 1979;75(4):409-20.

PMID:512973
Abstract
  1. Rhombencephalic and mesencephalic structures involved in electroreception were investigated by electrophysiological methods in the weakly electric fish Gnathonemus petersii. 2. The existence of a synchronous response to electric field stimulation of the fish in the mesencephalic exterolateral nucleus (n.ext.-lat.mes) with 2.5-3 ms latency was confirmed. The lateral line lobe nucleus (nLLL) is identified as the rhombencephalic relay for the mesencephalic responses because of the short latency synchronous response in the nLLL obtained by threshold stimulation of the posterior lateral line nerve. Responses in both the nLLL and the n.ext.-lat.mes. appear and their amplitudes increase simultaneously with increasing stimulus intensity. 3. Comparison of latencies supports a three-neuron pathway hypothesis which also agrees well with the various functional properties described. 4. The nLLL-n.ext.-lat.mes. pathway is blocked sharply for a period of 1 ms occurring 3 ms after the electric organ discharge (EOD). This inhibitory period is phase-related to the Mesencephalic Command Associated Signal (MCAS) of Aljure (1946) ; The phase relation is such that no response is observed to the fish's own EOD. 5. Long-lasting responses of 10-12 ms duration to higher stimulation intensities were obtained in the ganglionic layer of the lateral line lobe (LLL). Intensities evoking maximal responses in the nLLL and n.ext.lat.mes. are still threshold stimulation for lateral line lobe responses. 6. Long-lasting responses (of the same order as in the LLL) to the fish' own EOD were observed in the mesencephalic lateral nucleus. Responses to artificial electric pulses were obtained only if delivered in a certain phase realtion to the MCAS. The MCAS displays a facilitating effect on the slow conducting electrosensory system. 7. Results indicate the existence in mormyrids of a double, fast and slow conducting, electrosensory system similar to that of gymnotid fish. The mormyrids can control both of these electrosensory systems by means of the MCAS, the effect of which is opposite for the same time period on the two systems.
摘要
  1. 采用电生理方法,对弱电鱼彼得氏裸臀鱼中参与电感受的菱脑和中脑结构进行了研究。2. 证实了中脑外侧核(n.ext.-lat.mes)对鱼电场刺激存在潜伏期为2.5 - 3毫秒的同步反应。由于通过刺激后侧线神经阈值刺激在外侧线叶核(nLLL)获得的潜伏期短的同步反应,外侧线叶核被确定为菱脑对中脑反应的中继站。nLLL和n.ext.-lat.mes中的反应随着刺激强度增加同时出现且幅度增大。3. 潜伏期的比较支持三神经元通路假说,这也与所描述的各种功能特性非常吻合。4. nLLL - n.ext.-lat.mes通路在电器官放电(EOD)后3毫秒出现的1毫秒时间段内被急剧阻断。这个抑制期与阿尔朱雷(1946年)的中脑指令相关信号(MCAS)呈相位相关;相位关系使得对鱼自身的EOD没有反应。5. 在外侧线叶(LLL)的神经节层中获得了对较高刺激强度持续10 - 12毫秒的长时反应。在nLLL和n.ext.lat.mes中引发最大反应的强度对外侧线叶反应而言仍为阈值刺激。6. 在中脑外侧核中观察到对鱼自身EOD的长时反应(与LLL中的反应量级相同)。仅当以与MCAS特定相位关系施加时才能获得对人工电脉冲的反应。MCAS对慢传导电感受系统具有促进作用。7. 结果表明,裸臀鱼存在一个与裸背电鳗科鱼类类似的双电感受系统,即快速和慢速传导系统。裸臀鱼可以通过MCAS控制这两个电感受系统,在同一时间段内其对两个系统的作用相反。

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