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Effect of Dorsal and Ventral Hippocampal Lesions on Contextual Fear Conditioning and Unconditioned Defensive Behavior Induced by Electrical Stimulation of the Dorsal Periaqueductal Gray

机译:海马背侧和腹侧病变对电刺激背侧上壁输卵管灰质引起的上下文恐惧条件和无条件防御行为的影响

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摘要

The dorsal (DH) and ventral (VH) subregions of the hippocampus are involved in contextual fear conditioning. However, it is still unknown whether these two brain areas also play a role in defensive behavior induced by electrical stimulation of the dorsal periaqueductal gray (dPAG). In the present study, rats were implanted with electrodes into the dPAG to determine freezing and escape response thresholds after sham or bilateral electrolytic lesions of the DH or VH. The duration of freezing behavior that outlasted electrical stimulation of the dPAG was also measured. The next day, these animals were subjected to contextual fear conditioning using footshock as an unconditioned stimulus. Electrolytic lesions of the DH and VH impaired contextual fear conditioning. Only VH lesions disrupted conditioned freezing immediately after footshock and increased the thresholds of aversive freezing and escape responses to dPAG electrical stimulation. Neither DH nor VH lesions disrupted post-dPAG stimulation freezing. These results indicate that the VH but not DH plays an important role in aversively defensive behavior induced by dPAG electrical stimulation. Interpretations of these findings should be made with caution because of the fact that a non-fiber-sparing lesion method was employed.
机译:海马的背侧(DH)和腹侧(VH)子区域与情境恐惧调节有关。然而,仍然不清楚这两个大脑区域是否也在电刺激背周导水管灰色(dPAG)诱导的防御行为中发挥作用。在本研究中,将大鼠电极植入dPAG中,以确定DH或VH假或双侧电解损伤后的冻结和逃逸反应阈值。还测量了超过dPAG电刺激持续时间的冷冻行为持续时间。第二天,将这些动物以脚震作为无条件刺激物进行情境恐惧条件调节。 DH和VH的电解损伤损害了情境恐惧条件。仅VH病灶在发生触电后立即破坏了条件冻结,并增加了对dPAG电刺激的厌恶冻结和逃避反应的阈值。 DH和VH病变均未破坏dPAG刺激后的冻结。这些结果表明,VH而不是DH在dPAG电刺激引起的厌恶防御行为中起重要作用。对这些发现的解释应谨慎,因为使用了非保留纤维的病变方法。

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