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Brain size does not impact shoaling dynamics in unfamiliar groups of guppies ( Poecilia reticulata )

机译:大脑规模不会影响普通群体的普通群体(Poecilia Teticulata)中的挖掘动力学

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Highlights ? Does brain size impact collective motion in “brain size-selected” guppies? ? Those fish with known differences in learning do not differ in collective motion. ? Shoal dynamics are likely governed by relatively basic cognitive processes. Abstract Collective movement is achieved when individuals adopt local rules to interact with their neighbours. How the brain processes information about neighbours’ positions and movements may affect how individuals interact in groups. As brain size can determine such information processing it should impact collective animal movement. Here we investigate whether brain size affects the structure and organisation of newly forming fish shoals by quantifying the collective movement of guppies ( Poecilia reticulata ) from large- and small-brained selection lines, with known differences in learning and memory. We used automated tracking software to determine shoaling behaviour of single-sex groups of eight or two fish and found no evidence that brain size affected the speed, group size, or spatial and directional organisation of fish shoals. Our results suggest that brain size does not play an important role in how fish interact with each other in these types of moving groups of unfamiliar individuals. Based on these results, we propose that shoal dynamics are likely to be governed by relatively basic cognitive processes that do not differ in these brain size selected lines of guppies.
机译:强调 ?脑大小是否会影响“脑尺寸选择”的聚集动作?还那些具有已知学习差异的鱼在集体运动中没有不同。还浅滩动态可能受到相对基本的认知过程的管辖。当个人采用当地规则与邻居互动时,实现了集体运动。大脑如何处理有关邻居的位置和移动的信息可能会影响个人在组中的交互方式。随着大脑规模可以确定这种信息处理,应该影响集体动物运动。在这里,我们通过量化Guppies(Poecilia Reticirata)从大型和小趋势的选择线,具有已知学习和记忆的差异来调查大脑规模是否影响新形成鱼类浅的结构和组织。我们使用自动跟踪软件来确定八个或两条鱼的单性别群体的挖掘行为,发现脑大小影响了鱼类浅的速度,群体规模或空间和定向组织的证据。我们的结果表明,大脑规模并不在鱼类如何在这些类型的不熟悉的人群中互相互动的重要作用。基于这些结果,我们提出了浅滩动态可能受到相对基本的认知过程的管辖,这些过程在这些大脑规模的Guppies中没有不同。

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