实验性食物供应变化介导的空间记忆变化不影响山山雀海马解剖结构。

V. Pravosudov, Pierre Lavenex, N. S. Clayton
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引用次数: 32

摘要

早期的报告表明,食物贮藏行为的季节性变化(贮藏强度和贮藏检索的准确性)可能与海马体形成的形态变化有关,海马体是一种被认为在记忆贮藏位置中起作用的大脑结构。我们证明,食物供应的实验变化也可能引发贮藏物检索准确性的变化:圈养山雀(Poecile gambeli)在有限和不可预测的食物供应下恢复贮藏物更准确,在空间记忆测试中表现得比自由食物的鸟类更好。在本研究中,我们研究了这两个治疗组在海马形成的体积和神经元数量上是否也存在差异。如果对食物储存的记忆变化与海马体大小有关,那么我们的那些具有增强的储存恢复和空间记忆性能的鸟类应该有更大的海马体体积和总神经元数量。与这一预测相反,我们发现两个治疗组在海马形成的体积或总神经元数量上没有显著差异。因此,我们的研究结果表明,食物储存行为和空间记忆表现的变化,正如食物供应的实验变化所介导的,并不一定伴随着完全发育的、有经验的食物储存鸟类海马结构体积或神经元数量的形态学变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Changes in spatial memory mediated by experimental variation in food supply do not affect hippocampal anatomy in mountain chickadees (Poecile gambeli).
Earlier reports suggested that seasonal variation in food-caching behavior (caching intensity and cache retrieval accuracy) might correlate with morphological changes in the hippocampal formation, a brain structure thought to play a role in remembering cache locations. We demonstrated that changes in cache retrieval accuracy can also be triggered by experimental variation in food supply: captive mountain chickadees (Poecile gambeli) maintained on limited and unpredictable food supply were more accurate at recovering their caches and performed better on spatial memory tests than birds maintained on ad libitum food. In this study, we investigated whether these two treatment groups also differed in the volume and neuron number of the hippocampal formation. If variation in memory for food caches correlates with hippocampal size, then our birds with enhanced cache recovery and spatial memory performance should have larger hippocampal volumes and total neuron numbers. Contrary to this prediction we found no significant differences in volume or total neuron number of the hippocampal formation between the two treatment groups. Our results therefore indicate that changes in food-caching behavior and spatial memory performance, as mediated by experimental variations in food supply, are not necessarily accompanied by morphological changes in volume or neuron number of the hippocampal formation in fully developed, experienced food-caching birds.
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