Trivedi Mehul A, Coover Gary D
Department of Psychology, Northern Illinois University, DeKalb, IL 60115, USA.
Neurobiol Learn Mem. 2004 May;81(3):172-84. doi: 10.1016/j.nlm.2004.02.005.
The hippocampus has been suggested to be involved in spatial (or configural) memory and also in the inhibition of certain response or goal alternatives. An increasing number of anatomical, physiological, and behavioral studies indicate that the hippocampus is functionally heterogeneous along the dorsal-ventral axis. Identification of distinct behavioral roles for the dorsal (DH) and ventral (VH) hippocampus may resolve differences between the various theoretical accounts of hippocampal function. The present study examined the effects of electrolytic lesions restricted to the DH or VH on fear-conditioned freezing, passive avoidance on the elevated T-maze (ETM) test of anxiety, and general activity in male Sprague-Dawley (Charles-River derived) albino rats. We found that rats with lesions of the VH, but not DH showed reduced freezing to both context and tone conditioned stimuli (CS). Rats with VH lesions also showed a reduced latency to emerge from the enclosed arm on trials 2 and 3 of the ETM (indicating reduced anxious behavior), while having no effect on the latency to escape from the open arms on trial 4. There were no differences in activity between the groups. These results indicate that the VH and DH are differentially involved in passive avoidance on the ETM and conditioned freezing to context and tone CS. We suggest that the VH may be specifically involved in modulating goal-oriented, defensive behavior expression through hypothalamic and amygdaloid connections.
海马体被认为与空间(或构型)记忆有关,也与抑制某些反应或目标选择有关。越来越多的解剖学、生理学和行为学研究表明,海马体在背腹轴上功能存在异质性。确定背侧(DH)和腹侧(VH)海马体不同的行为作用,可能会解决关于海马体功能的各种理论解释之间的差异。本研究考察了局限于DH或VH的电解损伤对雄性斯普拉格-道利(源自查尔斯河)白化大鼠恐惧条件性僵立、高架T迷宫(ETM)焦虑测试中的被动回避以及一般活动的影响。我们发现,VH损伤的大鼠而非DH损伤的大鼠,对情境和音调条件刺激(CS)的僵立反应减少。VH损伤的大鼠在ETM测试的第2和第3次试验中,从封闭臂出来的潜伏期也缩短了(表明焦虑行为减少),而对第4次试验中从开放臂逃脱的潜伏期没有影响。各组之间的活动没有差异。这些结果表明,VH和DH在ETM测试中的被动回避以及对情境和音调CS的条件性僵立反应中发挥不同作用。我们认为,VH可能通过下丘脑和杏仁核连接,特别参与调节目标导向的防御行为表达。