首页> 外文期刊>Behavioral neuroscience >Social Investigation in a Memory Task Relates to Natural Variation in Septal Expression of Oxytocin Receptor and Vasopressin Receptor 1a in Prairie Voles (Microtus ochrogaster)
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Social Investigation in a Memory Task Relates to Natural Variation in Septal Expression of Oxytocin Receptor and Vasopressin Receptor 1a in Prairie Voles (Microtus ochrogaster)

机译:记忆任务中的社会调查与大田鼠中的催产素受体和加压素受体1a间隔表达的自然变化有关。

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摘要

Arginine vasopressin (AVP) and oxytocin (OT) influence social behavior and cognitive processes and may explain some of the variance associated with individual differences in behavior. Although great focus has been placed on the roles of these peptides in learning and memory, less attention has been given to the receptors to which they bind. The authors exposed male prairie voles (Microtus ochrogaster) to novel females in a multitrial social recognition test to investigate whether individual differences in vasopressin receptor (V1aR) or oxytocin receptor (OTR) related to social recognition. The authors also explored differences in OTR and V1aR throughout the brain to determine whether patterns of receptor coexpression emerged in functionally related structures. Male investigation of females was highly variable, and those that investigated females the most did not habituate to repeated female presentation. Moreover, high investigators expressed significantly more V1aR and less OTR in the lateral septum. Coexpression patterns of these receptors emphasize the role of OT and AVP in neural circuits involved in social behavior, reward, learning, and memory. Understanding individual differences in the laboratory may provide insight into evolved natural behavior.
机译:精氨酸加压素(AVP)和催产素(OT)影响社会行为和认知过程,并可以解释与个体行为差异相关的一些差异。尽管已经将重点放在这些肽在学习和记忆中的作用上,但是对它们结合的受体的关注却很少。作者在一次多重社会认可测试中将雄性草原田鼠(田鼠(Microtus ochrogaster))暴露于新型雌性,以调查血管加压素受体(V1aR)或催产素受体(OTR)的个体差异是否与社会认可有关。作者还探索了整个大脑中OTR和V1aR的差异,以确定在功能相关结构中是否出现了受体共表达的模式。男性对女性的调查变化很大,而那些对女性进行最多调查的人则不习惯于重复出现女性。此外,高水平的研究者在外侧隔中表达出明显更高的V1aR和更少的OTR。这些受体的共表达模式强调了OT和AVP在涉及社交行为,奖励,学习和记忆的神经回路中的作用。了解实验室中的个体差异可能有助于深入了解自然行为。

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