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首页> 外文期刊>Hippocampus >Double dissociation of learned approach–avoidance conflict processing and spatial pattern separation along the dorsoventral axis of the dentate gyrus
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Double dissociation of learned approach–avoidance conflict processing and spatial pattern separation along the dorsoventral axis of the dentate gyrus

机译:学习方法的双重解离冲突冲突处理和沿着齿状轴的多叶轴轴分离的空间图案分离

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摘要

Abstract The ventral portion of the rodent hippocampus (HPC; anterior in primates) has been implicated in the detection and resolution of approach–avoidance conflict, which arises when an organism encounters a stimulus that predicts both positive and negative outcomes. Previous work has found differential regulation of approach–avoidance conflict behavior by the CA3 and CA1 subfields, with inhibition of ventral CA3 increasing approach toward conflicting stimuli and inhibition of the ventral CA1 potentiating avoidance. Here, we sought to extend these findings by investigating the role of the dentate gyrus (DG), the input region of the HPC, in learned approach–avoidance conflict processing in rats. Animals were first trained to acquire three different visuotactile cue‐outcome associations in separate arms of a Y‐maze (appetitive, aversive, and neutral). Postacquisition, they were administered a “conflict test,” in which they were presented with a choice between exploring an arm in which the appetitive and aversive cues were concurrently presented (conflict stimulus), and another arm containing the neutral stimulus. GABAR‐mediated inactivation of the ventral DG, but not dorsal DG, potentiated approach behavior toward the conflict stimulus, similar to the effects of ventral CA3 inactivation. In contrast, dorsal DG, but not ventral DG, inactivation was found to impair performance on a metric spatial discrimination task, which is commonly used as a test of pattern separation. The findings of this study demonstrate a robust double dissociation between the ventral and dorsal aspects of the DG, in line with previous reports of functional differences along the longitudinal axis of the HPC.
机译:摘要啮齿动物海马(HPC;灵长类动物)的腹侧部分已经涉及检测和解决方法 - 避免冲突,当一个有机体遇到预测正负结果的刺激时出现。先前的工作已经发现CA3和CA1子场的接近避免冲突行为的差异调节,抑制腹侧CA3增加刺激刺激和腹侧CA1抑制避免的刺激方法。在这里,我们试图通过研究牙齿回收(DG),HPC的输入区域的作用来延长这些发现,以学会避免大鼠的避免冲突处理。首次培训动物以在Y型迷宫(表现,厌恶和中性)的单独臂中获得三种不同的粘合性提示结果。运行后,他们被管理了“冲突测试”,其中他们在探索一个手臂之间提供了一种选择,其中伴随着表现和厌恶线索并发呈现(冲突刺激),以及包含中性刺激的另一个手臂。 Gabar介导的腹侧DG的失活,但不是背部DG,对冲突刺激的强化方法行为,类似于腹侧CA3失活的影响。相比之下,背部DG,但不是腹侧DG,发现失活在公制空间鉴别任务上损害性能,这通常用作模式分离的测试。该研究的发现表明,DG的腹侧和背侧方面之间的强大双重解离,其与先前的HPC纵向轴线的功能差的报告。

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