Carlson Bruce A, Kawasaki Masashi
Department of Biology, University of Virginia, Gilmer Hall, P.O. Box 400328, Charlottesville, VA 22904-4328, USA.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2007 Sep;193(9):927-41. doi: 10.1007/s00359-007-0246-6. Epub 2007 Jul 3.
The jamming avoidance response (JAR) of the weakly electric fish Eigenmannia is characterized by upward or downward shifts in electric organ discharge (EOD) frequency that are elicited by particular combinations of sinusoidal amplitude modulation (AM) and differential phase modulation (DPM). However, non-jamming stimuli that consist of AM and/or DPM can elicit similar shifts in EOD frequency. We tested the hypothesis that these behavioral responses result from non-jamming stimuli being misperceived as jamming stimuli. Responses to non-jamming stimuli were similar to JARs as measured by modulation rate tuning, sensitivity, and temporal dynamics. There was a smooth transition between the magnitude of JARs and responses to stimuli with variable depths of AM or DPM, suggesting that frequency shifts in response to jamming and non-jamming stimuli represent different points along a continuum rather than categorically distinct behaviors. We also tested the hypothesis that non-jamming stimuli can elicit frequency shifts in natural contexts. Frequency decreases could be elicited by semi-natural AM stimuli, such as random AM, AM presented to a localized portion of the body surface, transient changes in amplitude, and movement of resistive objects through the electric field. We conclude that 'phantom' jamming stimuli can induce EOD frequency shifts in natural situations.
弱电鱼裸背电鳗的避干扰反应(JAR)的特征是,由正弦调幅(AM)和差分调相(DPM)的特定组合引发的电器官放电(EOD)频率向上或向下偏移。然而,由AM和/或DPM组成的非干扰刺激也能引发EOD频率的类似偏移。我们检验了这样一个假设,即这些行为反应是由于非干扰刺激被误判为干扰刺激所致。通过调制率调谐、灵敏度和时间动态测量发现,对非干扰刺激的反应与JAR相似。在JAR的幅度与对具有不同AM或DPM深度的刺激的反应之间存在平滑过渡,这表明对干扰和非干扰刺激的频率偏移代表了连续统一体上的不同点,而不是绝对不同的行为。我们还检验了非干扰刺激在自然环境中能否引发频率偏移的假设。半自然AM刺激,如随机AM、施加于身体表面局部区域的AM、幅度的瞬态变化以及电阻物体在电场中的移动,都能引发频率降低。我们得出结论,“虚拟”干扰刺激在自然情况下可诱发EOD频率偏移。