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全局电感觉振荡增强了裸背鳗中脑神经元的方向反应。

Global electrosensory oscillations enhance directional responses of midbrain neurons in eigenmannia.

作者信息

Ramcharitar J U, Tan E W, Fortune E S

机构信息

Department of Psychological and Brain Sciences, The Johns Hopkins University, 3400 N. Charles St., Baltimore, MD 21218, USA.

出版信息

J Neurophysiol. 2006 Nov;96(5):2319-26. doi: 10.1152/jn.00311.2006. Epub 2006 Jun 21.

Abstract

Eigenmannia, a genus of weakly electric fish, exhibits a specialized behavior known as the jamming avoidance response (JAR). The JAR results in a categorical difference between Eigenmannia that are in groups of conspecifics and those that are alone. Fish in groups exhibit the JAR behavior and thereby experience ongoing, global synchronous 20- to 50-Hz electrosensory oscillations, whereas solitary fish do not. Although previous work has shown that these ongoing signals do not significantly degrade electrosensory behavior, these oscillations nevertheless elicit short-term synaptic depression in midbrain circuits. Because short-term synaptic depression can have profound effects on the transmission of information through synapses, we examined the differences in intracellularly recorded responses of midbrain neurons in awake, behaving fish to moving electrosensory images under electrosensory conditions that mimic solitary fish and fish in groups. In solitary conditions, moving objects elicited Gaussian or sinusoidal postsynaptic potentials (PSPs) that commonly exhibited preferential responses to a direction of motion. Surprisingly, when the same stimulus was presented in the presence of the global oscillations, directional selectivity was increased in all neurons tested. The magnitudes of the differences in PSP amplitude for preferred and nonpreferred directions were correlated with a measure of short-term synaptic depression in both conditions. The electrosensory consequences of the JAR appear to result in an enhancement of the representation of direction of motion in midbrain neurons. The data also support a role for short-term synaptic depression in the generation and modulation of directional responses.

摘要

裸背电鳗属是弱电鱼的一个属,表现出一种特殊行为,即干扰回避反应(JAR)。JAR导致处于同物种群体中的裸背电鳗与单独的裸背电鳗之间存在类别差异。群体中的鱼表现出JAR行为,从而经历持续的、全局同步的20至50赫兹电感觉振荡,而单独的鱼则不会。尽管先前的研究表明,这些持续信号不会显著降低电感觉行为,但这些振荡仍会引起中脑回路中的短期突触抑制。由于短期突触抑制会对通过突触的信息传递产生深远影响,我们在模拟单独的鱼和群体中的鱼的电感觉条件下,研究了清醒、行为中的鱼的中脑神经元对移动电感觉图像的细胞内记录反应的差异。在单独的条件下,移动的物体会引发高斯或正弦突触后电位(PSP),这些电位通常对运动方向表现出优先反应。令人惊讶的是,当在全局振荡存在的情况下呈现相同刺激时,所有测试神经元的方向选择性都增加了。在两种条件下,偏好方向和非偏好方向的PSP幅度差异大小与短期突触抑制的一种测量方法相关。JAR的电感觉后果似乎导致中脑神经元中运动方向表征的增强。数据还支持短期突触抑制在方向反应的产生和调节中的作用。

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