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Recording Single Neurons Action Potentials from Freely Moving Pigeons Across Three Stages of Learning

机译:从跨越三个学习阶段的自由移动鸽子记录单个神经元的动作电位

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摘要

While the subject of learning has attracted immense interest from both behavioral and neural scientists, only relatively few investigators have observed single-neuron activity while animals are acquiring an operantly conditioned response, or when that response is extinguished. But even in these cases, observation periods usually encompass only a single stage of learning, i.e. acquisition or extinction, but not both (exceptions include protocols employing reversal learning; see Bingman et al.1 for an example). However, acquisition and extinction entail different learning mechanisms and are therefore expected to be accompanied by different types and/or loci of neural plasticity.Accordingly, we developed a behavioral paradigm which institutes three stages of learning in a single behavioral session and which is well suited for the simultaneous recording of single neurons' action potentials. Animals are trained on a single-interval forced choice task which requires mapping each of two possible choice responses to the presentation of different novel visual stimuli (acquisition). After having reached a predefined performance criterion, one of the two choice responses is no longer reinforced (extinction). Following a certain decrement in performance level, correct responses are reinforced again (reacquisition). By using a new set of stimuli in every session, animals can undergo the acquisition-extinction-reacquisition process repeatedly. Because all three stages of learning occur in a single behavioral session, the paradigm is ideal for the simultaneous observation of the spiking output of multiple single neurons. We use pigeons as model systems, but the task can easily be adapted to any other species capable of conditioned discrimination learning.
机译:虽然学习的主题引起了行为和神经科学家的极大兴趣,但只有相对少数的研究者在动物获得可操作的条件反应时或在这种反应消失时观察到了单个神经元的活动。但是即使在这些情况下,观察期通常也只包含一个学习阶段,即习得或消亡,但不能同时包含两者(例外包括采用逆向学习的协议;请参阅Bingman等人的 1 ) 。然而,习得和消亡需要不同的学习机制,因此预计会伴随着不同类型和/或基因可塑性位点。因此,我们开发了一种行为范式,该行为范式在单个行为会话中建立了三个学习阶段,非常适合同时记录单个神经元的动作电位。对动物进行单时间间隔强制选择任务的训练,该任务需要将两个可能的选择响应中的每一个映射到不同的新颖视觉刺激(获取)的呈现上。达到预定义的性能标准后,两个选择响应之一不再增强(消光)。在性能水平上有所降低之后,正确的响应会再次得到加强(重新获得)。通过在每个会话中使用一组新的刺激,动物可以反复进行获取-消灭-重新获取过程。由于学习的所有三个阶段都在单个行为会话中进行,因此该范例非常适合同时观察多个单个神经元的峰值输出。我们使用鸽子作为模型系统,但是这项任务可以轻松地适应于任何其他能够进行条件歧视学习的物种。

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