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Social Order: Using The Sequential Structure of Social Interaction to Discriminate Abnormal Social Behavior in the Rat

机译:社会秩序:使用社会互动的顺序结构区分大鼠的异常社会行为

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摘要

Social interactions form the basis of a broad range of functions related to survival and mating. The complexity of social behaviors and the flexibility required for normal social interactions make social behavior particularly susceptible to disruption. The consequences of developmental insults in the social domain and the associated neurobiological factors are commonly studied in rodents. Though methods for investigating social interactions in the laboratory are diverse, animals are typically placed together in an apparatus for a brief period (under 30 min) and allowed to interact freely while behavior is recorded for subsequent analysis. A standard approach to the analysis of social behavior involves quantification of the frequency and duration of individual social behaviors. This approach provides information about the allocation of time to particular behaviors within a session, which is typically sufficient for detection of robust alterations in behavior. Virtually all social species, however, display complex sequences of social behavior that are not captured in the quantification of individual behaviors. Sequences of behavior may provide more sensitive indicators of disruptions in social behavior. Sophisticated analysis systems for quantification of behavior sequences have been available for many years; however, the required training and time to complete these analyses represent significant barriers to high-throughput assessments. We present a simple approach to the quantification of behavioral sequences that requires minimal additional analytical steps after individual behaviors are coded. We implement this approach to identify altered social behavior in rats exposed to alcohol during prenatal development, and show that the frequency of several pairwise sequences of behavior discriminate controls from ethanol-exposed rats when the frequency of individual behaviors involved in those sequences does not. Thus, the approach described here may be useful in detecting subtle deficits in the social domain and identifying neural circuits involved in the organization of social behavior.
机译:社交互动是与生存和交配相关的各种功能的基础。社会行为的复杂性和正常社会互动所需的灵活性使社会行为特别容易受到破坏。啮齿类动物通常研究社交领域中发展侮辱的后果以及相关的神经生物学因素。尽管在实验室中调查社交互动的方法多种多样,但通常将动物放在一起在设备中放置一小段时间(30分钟以下),并允许其自由互动,同时记录行为以进行后续分析。分析社会行为的标准方法包括量化单个社会行为的频率和持续时间。这种方法提供了有关将时间分配给会话中特定行为的信息,这通常足以检测行为的健壮变化。但是,几乎所有的社会物种都显示出复杂的社会行为序列,这些序列在个体行为的量化中并未捕获。行为顺序可以提供更敏感的社会行为破坏指标。用于量化行为序列的复杂分析系统已经存在很多年了;但是,完成这些分析所需的培训和时间是高通量评估的重要障碍。我们提出了一种量化行为序列的简单方法,在对单个行为进行编码后,需要最少的附加分析步骤。我们实施这种方法来识别产前发育过程中暴露于酒精的大鼠中改变的社会行为,并表明当行为中的几个成对序列的频率与那些暴露于乙醇的大鼠中的个体行为的频率不同时,这些行为就可以区别于乙醇暴露的大鼠。因此,此处描述的方法可能有助于检测社交领域中的细微缺陷,并识别参与社交行为组织的神经回路。

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