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Time Course of Classically Conditioned Purkinje Cell Response Is Determined by Initial Part of Conditioned Stimulus

机译:经典条件浦肯野细胞反应的时程由条件刺激的初始部分决定

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摘要

Classical conditioning of a motor response such as eyeblink is associated with the development of a pause in cerebellar Purkinje cell firing that is an important driver of the overt response. This conditioned Purkinje cell response is adaptively timed and has a specific temporal profile that probably explains the time course of the overt behavior. It is generally assumed that the temporal properties of the conditioned Purkinje cell response are determined by the temporal pattern of the parallel fiber impulses generated by the conditioned stimulus at the time of the conditioned response. We show here in the decerebrate ferret preparation that a very brief conditioned stimulus, consisting of only one or two impulses in the mossy fibers, can be sufficient to elicit a full conditioned Purkinje cell response with normal time course. The finding suggests that parallel fiber input to the Purkinje cell influences the firing rate several hundred milliseconds later. It poses a serious challenge to the standard view of the role of parallel fiber impulses in response timing.
机译:运动反应(如眨眼)的经典条件与小脑浦肯野细胞射击暂停的发展有关,小脑浦肯野细胞射击是明显反应的重要驱动力。这种条件化的浦肯野细胞反应是自适应定时的,并具有特定的时间分布,这可能解释了明显行为的时间过程。通常假设条件浦肯野细胞反应的时间特性是由条件刺激时条件刺激产生的平行纤维冲动的时间模式决定的。我们在这里的去脑白鼬实验中显示,在苔藓纤维中仅包含一到两个脉冲的非常短暂的条件刺激就足以在正常的时间过程中引发完全的条件浦肯野细胞反应。该发现表明,并行的光纤输入浦肯野电池会在几百毫秒后影响发射速率。这对并行光纤脉冲在响应时序中的作用的标准观点提出了严峻挑战。

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