Chacron Maurice J, Maler Leonard, Bastian Joseph
Department of Zoology, University of Oklahoma, 730 Van Vleet Oval, Norman, Oklahoma 73019, USA.
Nat Neurosci. 2005 May;8(5):673-8. doi: 10.1038/nn1433. Epub 2005 Apr 3.
The gymnotiform weakly electric fish Apteronotus leptorhynchus can capture prey using electrosensory cues that are dominated by low temporal frequencies. However, conventional tuning curves predict poor electroreceptor afferent responses to low-frequency stimuli. We compared conventional tuning curves with information tuning curves and found that the latter predicted substantially improved responses to these behaviorally relevant stimuli. Analysis of receptor afferent baseline activity showed that negative correlations reduced low-frequency noise levels, thereby increasing information transmission. Multiunit recordings from receptor afferents showed that this increased information transmission could persist at the population level. Finally, we verified that this increased low-frequency information is preserved in the spike trains of central neurons that receive receptor afferent input. Our results demonstrate that conventional tuning curves can be misleading when certain noise reduction strategies are used by the nervous system.
裸背电鳗目弱电鱼线翎电鳗能够利用以低时间频率为主的电感觉线索来捕获猎物。然而,传统的调谐曲线预测电感受器传入神经对低频刺激的反应较差。我们将传统调谐曲线与信息调谐曲线进行了比较,发现后者预测对这些行为相关刺激的反应有显著改善。对感受器传入神经基线活动的分析表明,负相关降低了低频噪声水平,从而增加了信息传递。来自感受器传入神经的多单元记录表明,这种增加的信息传递在群体水平上可以持续。最后,我们证实这种增加的低频信息在接受感受器传入神经输入的中枢神经元的尖峰序列中得以保留。我们的结果表明,当神经系统使用某些降噪策略时,传统调谐曲线可能会产生误导。