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首页> 外文期刊>Behavioural Brain Research: An International Journal >Contribution of sex differences in the acute stress response to sex differences in water maze performance in the rat.
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Contribution of sex differences in the acute stress response to sex differences in water maze performance in the rat.

机译:性别差异在急性应激反应中对大鼠水迷宫性能中性别差异的贡献。

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Male rats outperform females in spatial tasks, such as the water maze (WM). Female rats are known to have higher basal serum corticosterone (CORT) levels and to manifest a more rapid and stronger CORT response to novel stressors. Sex differences in stress responses to the handling and forced swimming in the WM task might contribute to the sex difference in WM performance. In Experiment 1, naive females were found to be impaired relative to naive males in swimming to a visible platform in a WM pool due to strongly thigmotaxic swimming by females. In Experiment 2, serum CORT, a physiological measure of stress, was highly elevated during and after WM training, with [Formula: see text] values and strong inverse correlations between CORT and measures of WM performance in females. Familiarization with the WM pool and test procedures by strategies pretraining prior to spatial training reduced or eliminated the sex differences in the stress response and WM performance. In Experiment 3, adrenalectomy to eliminate the stress response eliminated sex differences in WM performance. Taken together, the results suggest that male and female rats may harbor brain circuitry that is equally capable of accurate spatial navigation and memory in the WM but which may be impaired to different degrees by the differential stress responses triggered by WM testing.
机译:在空间任务(例如水迷宫(WM))中,雄性大鼠的表现优于雌性。雌性大鼠已知具有较高的基础血清皮质酮(CORT)水平,并且对新型应激物表现出更快,更强的CORT反应。 WM任务对处理和强迫游泳的压力反应中的性别差异可能会导致WM性能方面的性别差异。在实验1中,发现由于女性强烈的血红素游动性,幼稚的女性相对于幼稚的男性在WM池中的可见平台游泳时会受损。在实验2中,在进行WM训练期间和之后,血清CORT(一种生理压力测量方法)高度升高,具有[公式:参见文字]值,并且CORT与女性WM表现的测量值之间具有很强的反相关性。通过在空间训练之前对策略进行预训练而熟悉WM库和测试程序,可以减少或消除压力反应和WM性能方面的性别差异。在实验3中,肾上腺切除术消除了压力反应,消除了WM表现中的性别差异。两者合计,结果表明,雄性和雌性大鼠可能具有同样的能力,能够在WM中精确地进行空间导航和记忆,但可能会因WM测试触发的差异性压力反应而在不同程度上受到损害。

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