Department of Pharmacology and Neuroscience Program, Zebrafish Neuroscience Research Consortium-ZNRC, Tulane University Medical School, 1430 Tulane Ave., New Orleans, LA 70112, USA.
Brain Res. 2012 Apr 27;1451:44-52. doi: 10.1016/j.brainres.2012.02.064. Epub 2012 Mar 4.
Zebrafish (Danio rerio) are emerging as a useful model organism for neuroscience research. Mounting evidence suggests that various traditional rodent paradigms may be adapted for testing zebrafish behavior. The open field test is a popular rodent test of novelty exploration, recently applied to zebrafish research. To better understand fish novelty behavior, we exposed adult zebrafish to two different open field arenas for 30 min, assessing the amount and temporal patterning of their exploration. While (similar to rodents) zebrafish scale their locomotory activity depending on the size of the tank, the temporal patterning of their activity was independent of arena size. These observations strikingly parallel similar rodent behaviors, suggesting that spatio-temporal strategies of animal exploration may be evolutionarily conserved across vertebrate species. In addition, we found interesting oscillations in zebrafish exploration, with the per-minute distribution of their horizontal activity demonstrating sinusoidal-like patterns. While such patterning is not reported for rodents and other higher vertebrates, a nonlinear regression analysis confirmed the oscillation patterning of all assessed zebrafish behavioral endpoints in both open field arenas, revealing a potentially important aspect of novelty exploration in lower vertebrates.
斑马鱼(Danio rerio)正逐渐成为神经科学研究的有用模式生物。越来越多的证据表明,各种传统的啮齿动物范式可能适用于测试斑马鱼的行为。旷场测试是一种流行的啮齿动物新奇探索测试,最近被应用于斑马鱼研究。为了更好地理解鱼类的新奇行为,我们将成年斑马鱼暴露在两个不同的旷场中 30 分钟,评估它们探索的数量和时间模式。虽然(与啮齿动物相似)斑马鱼会根据水箱的大小调整其运动活动,但它们的活动时间模式与竞技场的大小无关。这些观察结果与类似的啮齿动物行为惊人地相似,表明动物探索的时空策略可能在脊椎动物物种中是进化保守的。此外,我们还发现斑马鱼探索过程中存在有趣的震荡,其每分钟的水平活动分布呈现出类似正弦的模式。虽然这种模式在啮齿动物和其他高等脊椎动物中没有报道,但非线性回归分析证实了所有评估的斑马鱼在两个旷场中的行为终点的震荡模式,揭示了低等脊椎动物新奇探索的一个潜在重要方面。