Department of Psychology, UNC Wilmington, 601 S. College Rd., Wilmington, NC, 28403, USA.
Anim Cogn. 2024 Jun 17;27(1):44. doi: 10.1007/s10071-024-01881-7.
The blank comparison (BLC) task was developed to assess stimulus relations in discrimination learning; that is, are subjects learning to "select" the correct stimulus (S+) or "reject" the incorrect stimulus (S-) or both? This task has been used to study exclusion learning, mostly in humans and monkeys, and the present study extends the procedure to rats. The BLC task uses an ambiguous stimulus (BLC+/-) that replaces S+ (in the presence of S-) and replaces S- (in the presence of S+). In the current experiment, four rats were trained to remove session-novel scented lids from sand-filled cups in a two-choice, simultaneous presentation procedure called the Odor Span Task (OST) before being trained on the BLC procedure using odors as the discriminative stimuli. The BLC training procedure utilized simple discrimination training (S+ and S-) and added select (S+ and BLC-) and reject (BLC+ and S-) trial types. All rats demonstrated accurate performance in sessions with both select and reject type trials. Next, BLC probe trials were interspersed in standard OST sessions to assess the form of stimulus control in the OST. Rats performed accurately on select type probe trials (similar to baseline OST performance) and also showed above chance accuracy on reject type trials. Thus, we demonstrated that rats could acquire an odor-based version of the BLC task and that both select and exclusion-based (reject) relations were active in the OST. The finding of exclusion in rats under the rigorous BLC task conditions confirms that exclusion-based responding is not limited to humans and non-human primates.
空白比较 (BLC) 任务旨在评估辨别学习中的刺激关系;也就是说,被试是在学习“选择”正确的刺激 (S+) 还是“拒绝”错误的刺激 (S-),还是两者都有?该任务已被用于研究排除学习,主要是在人类和猴子中,本研究将该程序扩展到大鼠。BLC 任务使用一个模糊刺激 (BLC+/-),它替代 S+(在 S-存在的情况下)并替代 S-(在 S+存在的情况下)。在当前的实验中,四只大鼠在进行 BLC 程序训练之前,先在一个称为“气味跨度任务”(OST)的双选择、同时呈现程序中接受训练,从沙杯中移除带有新鲜气味的盖子。BLC 训练程序使用气味作为辨别刺激,进行简单辨别训练(S+和 S-),并添加选择(S+和 BLC-)和拒绝(BLC+和 S-)的试验类型。所有大鼠在具有选择和拒绝类型试验的训练中都表现出准确的表现。接下来,在标准 OST 训练中插入 BLC 探针试验,以评估 OST 中的刺激控制形式。大鼠在选择类型的探针试验中表现准确(与基线 OST 表现相似),并且在拒绝类型的试验中也表现出高于机会的准确性。因此,我们证明了大鼠可以获得基于气味的 BLC 任务版本,并且在 OST 中,选择和排除(拒绝)关系都很活跃。在严格的 BLC 任务条件下,大鼠中排除的发现证实了排除反应不仅限于人类和非人类灵长类动物。