Fortune E S, Rose G J, Kawasaki M
Department of Psychological and Brain Sciences, Johns Hopkins University, 3400 North Charles Street, Baltimore, MD 21218, USA.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2006 Jun;192(6):625-35. doi: 10.1007/s00359-006-0102-0. Epub 2006 Feb 1.
Wave-type weakly electric fish are specialists in time-domain processing: behaviors in these animals are often tightly correlated with the temporal structure of electrosensory signals. Behavioral responses in these fish can be dependent on differences in the temporal structure of electrosensory signals alone. This feature has facilitated the study of temporal codes and processing in central nervous system circuits of these animals. The temporal encoding and mechanisms used to transform temporal codes in the brain have been identified and characterized in several species, including South American gymnotid species and in the African mormyrid genus Gymnarchus. These distantly related groups use similar strategies for neural computations of information on the order of microseconds, milliseconds, and seconds. Here, we describe a suite of mechanisms for behaviorally relevant computations of temporal information that have been elucidated in these systems. These results show the critical role that behavioral experiments continue to have in the study of the neural control of behavior and its evolution.
这些动物的行为通常与电感觉信号的时间结构紧密相关。这些鱼类的行为反应可能仅取决于电感觉信号时间结构的差异。这一特性促进了对这些动物中枢神经系统回路中时间编码和处理的研究。在包括南美裸背电鳗类物种和非洲长颌鱼属裸臀鱼在内的几个物种中,已经识别并描述了大脑中用于转换时间编码的时间编码和机制。这些远缘类群在微秒、毫秒和秒量级的信息神经计算中使用类似的策略。在这里,我们描述了在这些系统中已阐明的一套用于行为相关时间信息计算的机制。这些结果表明,行为实验在行为的神经控制及其进化研究中继续发挥着关键作用。