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Hippocampal volume, social interactions, and the expression of the normal repertoire of resident?¢????intruder behavior

机译:海马体积,社交互动以及居民正常曲目的表述?入侵者行为

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Abstract Introduction Reduced hippocampal volumes are reported in individuals with disrupted emotional coping behaviors in both human clinical conditions and in experimental animal models of these populations. In a number of experimental animal models, it has been shown that social interactions can promote resilience and buffer the negative neural consequences of stimuli that disrupt effective coping. Methods Hippocampal and dentate gyrus volumes were calculated in 54 male Sprague Dawley rats; (1) single housed ( n = 12), (2) single housed and exposed to daily 6-min social interactions testing in a resident?¢????intruder paradigm ( n = 11); (3) group housed ( n = 12); (4) single housed and sham injured ( n = 12); (5) single housed, sham injured, and social interactions tested ( n = 7). Results We present data which shows that even a brief daily exposure to a conspecific in resident?¢????intruder social interactions test is sufficient to prevent the reduction in hippocampal volume triggered by single housing. Conclusion When considered with previously published data, these findings suggest that the expression of the full repertoire of social, nonsocial, dominance, and submissive behaviors in response to the physical presence of an intruder in the home cage plays a significant role in this maintenance of hippocampal volume.
机译:摘要简介据报道,在人类临床状况和这些人群的实验动物模型中,情绪应对行为受到干扰的个体海马体积均减少。在许多实验动物模型中,研究表明社交互动可以促进适应力,并缓冲破坏有效应对的刺激产生的负面神经后果。方法计算54只雄性Sprague Dawley大鼠的海马和齿状回体积。 (1)单人房(n = 12),(2)单人房并在居民入侵者范式下每天接受6分钟的社交互动测试(n = 11); (3)集体住所(n = 12); (4)单人房和假人受伤(n = 12); (5)单人房,假人受伤并进行了社交互动测试(n = 7)。结果我们提供的数据表明,即使每天短暂地接受居民入侵者社交互动测试中的同种异型暴露,也足以防止由于单人房引发的海马体积减少。结论当与以前发表的数据一起考虑时,这些发现表明响应入侵者在笼子里的身体存在,社交,非社交,主导和顺从行为的完整表述在维持海马体中起着重要作用。卷。

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