Carlson Bruce A, Kawasaki Masashi
Department of Biology, University of Virginia, Charlottesville, VA 22904, USA.
J Comput Neurosci. 2008 Aug;25(1):1-24. doi: 10.1007/s10827-007-0062-6. Epub 2008 Jan 5.
Information theoretical approaches to sensory processing in electric fish have focused on the encoding of amplitude modulations in a single sensory pathway in the South American gymnotiforms. To assess the generality of these studies, we investigated the encoding of amplitude and phase modulations in the distantly related African fish Gymnarchus. In both the amplitude- and time-coding pathways, primary afferents accurately estimated the time course of random modulations whereas hindbrain neurons extracted information about specific stimulus features. Despite exhibiting a clear preference for encoding amplitude or phase, afferents and hindbrain neurons could encode significant amounts of modulation of their nonpreferred attribute. Although no increase in feature extraction performance occurred where the two pathways converge in the midbrain, neurons there were increasingly sensitive to simultaneous modulation of both attributes. A shift from accurate stimulus estimation in the periphery to increasingly sparse representations of specific features appears to be a general strategy in electrosensory processing.
针对电鱼感官处理的信息理论方法一直聚焦于南美裸背电鳗目鱼类单一感官通路中幅度调制的编码。为评估这些研究的普遍性,我们研究了亲缘关系较远的非洲鱼类裸臀鱼中幅度调制和相位调制的编码。在幅度编码通路和时间编码通路中,初级传入神经能准确估计随机调制的时间进程,而后脑神经元提取有关特定刺激特征的信息。尽管传入神经和后脑神经元在编码幅度或相位方面表现出明显偏好,但它们也能编码大量其非偏好属性的调制信息。虽然在中脑两条通路汇合处特征提取性能没有提高,但那里的神经元对两种属性的同时调制越来越敏感。从外周精确的刺激估计到特定特征的表征越来越稀疏,这种转变似乎是电感觉处理中的一种普遍策略。