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Burst Firing in the Electrosensory System of Gymnotiform Weakly Electric Fish: Mechanisms and Functional Roles

机译:剑形弱电鱼电感应系统中的爆炸射击:机理和功能作用

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Neurons across sensory systems and organisms often display complex patterns of action potentials in response to sensory input. One example of such a pattern is the tendency of neurons to fire packets of action potentials (i.e., a burst) followed by quiescence. While it is well known that multiple mechanisms can generate bursts of action potentials at both the single-neuron and the network level, the functional role of burst firing in sensory processing is not so well understood to date. Here we provide a comprehensive review of the known mechanisms and functions of burst firing in processing of electrosensory stimuli in gymnotiform weakly electric fish. We also present new evidence from existing data showing that bursts and isolated spikes provide distinct information about stimulus variance. It is likely that these functional roles will be generally applicable to other systems and species.
机译:跨越感觉系统和生物体的神经元通常会响应于感觉输入而显示出动作电位的复杂模式。这种模式的一个例子是神经元趋向于发射动作电位包(即,爆发)并随后静止的包。众所周知,多种机制可以在单神经元和网络水平上产生动作电位猝发,但迄今为止,在感觉处理中猝发放电的功能作用尚不十分清楚。在这里,我们提供了对在体操状弱电鱼中的电感应刺激处理中爆发放电的已知机制和功能的全面综述。我们还从现有数据中提供了新证据,表明爆发和孤立的尖峰提供了有关刺激差异的独特信息。这些功能角色可能会普遍适用于其他系统和物种。

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