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“Swimming against the current”: Behavioral data of B etta splendens during an escape and avoidance task with water flows as the aversive stimulus

机译:“逆流而行”: B etta splendens 在逃避任务中,以水流为厌恶刺激的行为数据

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This paper describes the behavioral data of an experiment in which water flows (WFs) were first used as replacement of the traditional electric shocks to test free-operant avoidance inBetta splendens(Hurtado-Parrado et?al. 2019https://doi.org/10.1016/j.beproc.2018.10.021). WFs with a duration of 10 s each were delivered with 30-s flow-flow (F–F) and response-flow (R–F) intervals in a custom-made shuttle tank. Fish escaped or avoided the WFs by changing compartments. Crossings during the WFs, interrupted the flows, were automatically scored as escape (Esc), and initiated a new R–F interval. Crossings that occurred during R–F or F–F intervals were scored as avoidance responses and also reset the R–F interval. We compared the effect of adding a warning stimulus - curtains of air bubbles - to the last 5 s of the R–F interval; i.e., signaled versus unsignaled avoidance. A unique development of the WFs procedure, and thus the data here described, is that crossings were further differentiated into subcategories; namely, early avoidance (EA) if a crossing occurred during the first 25 s of the R–F interval; late avoidance (LA) if a crossing occurred during the last 5 s of the R–F interval; and Flow-Flow avoidance (FF) if a crossing occurred anytime during the F–F interval. Here we present the data of six bettas across the different phases of the experiment; namely, baseline (BL - no WFs programmed), signaled avoidance (SA – warning stimulus scheduled), and unsignaled avoidance (UA - no warning stimulus scheduled). The dataset available at the Open Science Framework (OSF) repository (http://doi.org/10.17605/OSF.IO/FMHXD(Hurtado-Parrado et?al., 2019)) includes for each fish and per 20-min daily session the total number of crossings; frequency of each type of crossing (Esc, EA, LA, FF); total WF frequency and duration, the total time spent in each compartment, and an index of preference for each compartment based on the proportion of time spent in the tank's compartments.
机译:本文描述了一项实验的行为数据,在该实验中,首先使用水流(WFs)代替了传统的电击以测试Betta splendens中的自由逃避行为(Hurtado-Parrado et al.2019https://doi.org/ 10.1016 / j.beproc.2018.10.021)。在定制的往复式水箱中,间隔10 s的WF以30 s的流量(F–F)和响应流(RF)的间隔交付。鱼通过改变隔间逃脱或避开了WF。 WF期间的交叉路口中断了水流,并自动计为逃逸(Esc),并启动了一个新的RF间隔。在RF或F-F间隔期间发生的交叉被记为回避响应,并重置了RF间隔。我们比较了在RF间隔的最后5 s中添加警告刺激(气泡帘)的效果;即信号避免与未信号避免。 WFs程序的一个独特发展,以及由此描述的数据,是将交叉点进一步分为子类别。即,如果在RF间隔的前25 s内发生交叉,则进行早期回避(EA);如果在RF间隔的最后5 s内发生交叉,则进行后期回避(LA);如果在F–F间隔中的任何时间发生交叉,则避免流向(FF)。在这里,我们展示了实验不同阶段的六个斗鱼的数据。即基线(BL-未编程的WF),信号回避(SA-计划的警告刺激)和无信号回避(UA-未计划的警告刺激)。开放科学框架(OSF)存储库(http://doi.org/10.17605/OSF.IO/FMHXD(Hurtado-Parrado等,2019))上可用的数据集包括每条鱼和每天每20分钟的一次会议过境总数;每种穿越类型(Esc,EA,LA,FF)的频率; WF的总频率和持续时间,在每个隔间中花费的总时间,以及基于在储水池的隔间中花费的时间比例的每个隔间的优先级指数。

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