首页> 美国卫生研究院文献>Brazilian Journal of Medical and Biological Research >Small-scale environmental enrichment and exercise enhance learning and spatial memory of Carassius auratus and increase cell proliferation in the telencephalon: an exploratory study
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Small-scale environmental enrichment and exercise enhance learning and spatial memory of Carassius auratus and increase cell proliferation in the telencephalon: an exploratory study

机译:一项探索性研究:小规模的环境富集和锻炼可增强a鱼的学习和空间记忆并增加其端脑中的细胞增殖

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摘要

Carassius auratus is a teleost fish that has been largely used in behavioral studies. However, little is known about potential environmental influences on its performance of learning and memory tasks. Here, we investigated this question in C. auratus, and searched for potential correlation between exercise and visuospatial enrichment with the total number of telencephalic glia and neurons. To that end, males and females were housed for 183 days in either an enriched (EE) or impoverished environment (IE) aquarium. EE contained toys, natural plants, and a 12-hour/day water stream for voluntary exercise, whereas the IE had none of the above. A third plus-maze aquarium was used for spatial and object recognition tests. Different visual clues in 2 of its 4 arms were used to guide fish to reach the criteria to complete the task. The test consisted of 30 sessions and was concluded when each animal performed three consecutive correct choices or seven alternated, each ten trials. Learning rates revealed significant differences between EE and IE fish. The optical fractionator was used to estimate the total number of telencephalic cells that were stained with cresyl violet. On average, the total number of cells in the subjects from EE was higher than those from subjects maintained in IE (P=0.0202). We suggest that environmental enrichment significantly influenced goldfish spatial learning and memory abilities, and this may be associated with an increase in the total number of telencephalic cells.
机译:assi鱼是一种硬骨鱼,已在行为研究中大量使用。然而,人们对其潜在的学习和记忆任务的环境影响知之甚少。在这里,我们调查了金眼鱼的这个问题,并研究了运动和视觉空间充实与端脑神经胶质和神经元总数之间的潜在相关性。为此,将雄性和雌性分别在丰富(EE)或贫困环境(IE)水族馆中饲养了183天。 EE包含玩具,天然植物和每天12小时的水流以进行自愿锻炼,而IE则没有以上任何一项。第三个迷宫水族馆用于空间和物体识别测试。它的4个手臂中有2个手臂有不同的视觉线索,可以引导鱼达到完成任务的标准。该测试包括30个阶段,并在每只动物进行了三个连续的正确选择或七个交替的选择(每十个试验)时结束。学习率表明EE和IE鱼之间存在显着差异。光学分馏仪用于估计被甲酚紫染色的端脑细胞总数。平均而言,EE受试者的细胞总数高于IE中维持的受试者的细胞总数(P = 0.0202)。我们建议环境的丰富化显着影响金鱼的空间学习和记忆能力,这可能与端脑细胞总数的增加有关。

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