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The expression of fear-potentiated startle during development: Integration of learning and response systems

机译:在开发过程中恐惧增强的惊吓的表达:学习和应对系统的整合

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Relative to freezing, fear-potentiated startle (FPS) is developmentally delayed. Rats trained on Postnatal Day (PD) 18 expressed conditioned stimulus learning on PD 19 in freezing but not in FPS, whereas rats trained on PD 24 and tested on PD 25 expressed both freezing and FPS (Experiment 1). According to a neural maturation hypothesis, this delay results from functional immaturity of pathways mediating FPS. When rats were trained on PD 18, neither delaying the FPS test, allowing FPS pathways to develop, nor administrating the "reminder" treatment, the expression of FPS was promoted (Experiments 1, 2, and 2A). PD 18 learning was expressed in FPS on PD 25 when nontarget conditioned stimulus-unconditioned stimulus training occurred prior to the test, and this effect was modality dependent (Experiments 3 and 4). The authors conclude that engaging mechanisms of associative encoding when FPS pathways are functional is a critical condition for integrating learning and FPS response systems in development.
机译:相对于冻结,恐惧增强的惊吓(FPS)在发育上有所延迟。在出生后第18天训练的大鼠在冰冻状态下在PD 19上表达了条件刺激学习,而在FPS中却没有,而在PD 24训练并且在PD 25上进行测试的大鼠则表达了冻结和FPS(实验1)。根据神经成熟假设,这种延迟是由介导FPS的途径的功能不成熟引起的。当在PD 18上对大鼠进行训练时,既不延迟FPS测试,也不允许FPS通路发展,也没有进行“提醒”治疗,FPS的表达得到了促进(实验1、2和2A)。当在测试之前进行非目标条件刺激-非条件刺激训练时,PD 25上的FPS中会表达PD 18学习,并且这种影响取决于模式(实验3和4)。作者得出的结论是,当FPS通路起作用时,相关编码的参​​与机制是在开发中整合学习和FPS响应系统的关键条件。

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