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长颌鱼科电鱼中脑的时间编码。II. 外侧核后部的刺激选择性。

Time coding in the midbrain of mormyrid electric fish. II. Stimulus selectivity in the nucleus exterolateralis pars posterior.

作者信息

Amagai S

机构信息

Section of Neurobiology and Behavior, Cornell University, Ithaca, NY 14853-2702, USA.

出版信息

J Comp Physiol A. 1998 Feb;182(2):131-43. doi: 10.1007/s003590050164.

Abstract

The anterior and posterior exterolateral nuclei (ELa and ELp) of the mormyrid midbrain are thought to play a critical role in the temporal analysis of the electric discharge waveforms of other individuals. The peripheral electroreceptors receiving electric organ discharges (EODs) of other fish project through the brainstem to ELa via a rapid conducting pathway. EODs, composed of brief, but stereotyped waveforms are encoded as a temporal pattern of spikes. From previous work, we know that phase locking is precise in ELa. Here it is shown that evoked potentials recorded from ELp show a similar high degree of phase locking, although the evoked potentials last much longer. Single-unit recordings in ELp reveal two distinct populations of neurons in ELp: type I cells are responsive to voltage step functions, and not tuned for stimulus duration; type II cells are tuned to a specific range of stimulus durations. Type II cells are less responsive than type I cells, tend to respond with bursts of action potentials rather than with single spikes, have a longer latency, show weaker time locking to stimuli, and are more sensitive to stimulus polarity and amplitude. The stimulus selectivity of type II cells may arise from convergence of type I cell inputs. Despite the loss of rapid conduction between ELa and ELp, analysis of temporal features of waveforms evidently continues in ELp, perhaps through a system of labeled lines.

摘要

象鼻鱼中脑的前外侧核和后外侧核(ELa和ELp)被认为在对其他个体放电波形的时间分析中起关键作用。接收其他鱼类电器官放电(EOD)的外周电感受器通过快速传导通路经脑干投射到ELa。由短暂但刻板波形组成的EOD被编码为尖峰的时间模式。从先前的研究工作中,我们知道ELa中的锁相是精确的。此处表明,从ELp记录的诱发电位显示出类似的高度锁相,尽管诱发电位持续时间长得多。ELp中的单单位记录揭示了ELp中两种不同的神经元群体:I型细胞对电压阶跃函数有反应,且不对刺激持续时间进行调谐;II型细胞被调谐到特定的刺激持续时间范围。II型细胞比I型细胞反应性更低,倾向于以动作电位爆发而非单个尖峰做出反应,具有更长的潜伏期,对刺激的时间锁定较弱,并且对刺激极性和幅度更敏感。II型细胞的刺激选择性可能源于I型细胞输入的汇聚。尽管ELa和ELp之间失去了快速传导,但波形时间特征的分析显然在ELp中继续进行,可能是通过一个标记线系统。

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