首页> 外文期刊>Prostaglandins, Leukotrienes, and Essential Fatty Acids >An n-3 fatty acid deficient diet affects mouse spatial learning in the Barnes circular maze.
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An n-3 fatty acid deficient diet affects mouse spatial learning in the Barnes circular maze.

机译:n-3脂肪酸缺乏饮食会影响Barnes圆形迷宫中的小鼠空间学习。

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Deficiency in n-3 fatty acids has been accomplished through the use of an artificial rearing method in which ICR mouse pups were hand fed a deficient diet starting from the 2nd day of life. There was a 51% loss of total brain DHA in mice with an n-3 fatty acid-deficient diet relative to those with a diet sufficient in n-3 fatty acids. n-3 fatty acid adequate and deficient mice did not differ in terms of locomotor activity in the open field test or in anxiety-related behavior in the elevated plus maze. The n-3 fatty acid-deficient mice demonstrated impaired learning in the reference-memory version of the Barnes circular maze as they spent more time and made more errors in search of an escape tunnel. No difference in performance between all dietary groups in the cued and working memory version of the Barnes maze was observed. This indicated that motivational, motor and sensory factors did not contribute to the reference memory impairment.
机译:n-3脂肪酸的缺乏已经通过使用人工饲养方法得以实现,在该方法中,从出生后的第二天开始,对ICR小鼠的幼鼠进行了饮食不足的手工喂养。饮食中n-3脂肪酸缺乏的小鼠相对于饮食中n-3脂肪酸充足的小鼠的总脑DHA损失了51%。 n-3脂肪酸充足和不足的小鼠在野外试验中的运动活动方面或高架迷宫中与焦虑相关的行为方面均没有差异。 n-3脂肪酸缺乏的小鼠在Barnes圆形迷宫的参考内存版本中表现出学习障碍,因为它们花费更多的时间并在寻找逃生通道时犯了更多的错误。在提示和工作记忆版本的Barnes迷宫中,所有饮食组之间的性能均无差异。这表明动机,运动和感觉因素并未导致参考记忆障碍。

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