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Similar Odor Discrimination Behavior in Head-Restrained and Freely Moving Mice

机译:头部约束和自由移动的小鼠中类似的气味歧视行为

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摘要

A major challenge in neuroscience is relating neuronal activity to animal behavior. In olfaction limited techniques are available for these correlation studies in freely moving animals. To solve this problem, we developed an olfactory behavioral assay in head-restrained mice where we can monitor behavioral responses with high temporal precision. Mice were trained on a go/no-go operant conditioning paradigm to discriminate simple monomolecular odorants, as well as complex odorants such as binary mixtures of monomolecular odorants or natural odorants. Mice learned to discriminate both simple and complex odors in a few hundred trials with high accuracy. We then compared the discrimination performance of headrestrained mice to the performance observed in freely moving mice. Discrimination accuracies were comparable in both behavioral paradigms. In addition, iscrimination times were measured while the animals performed well. In both tasks, mice discriminated simple odors in a few hundred milliseconds and took additional time to discriminate the complex mixtures. In conclusion, mice showed similar and efficient discrimination behavior while head-restrained compared with freely moving mice. Therefore, the head-restrained paradigm offers a relevant approach to monitor neuronal activity while animals are actively engaged in olfactory discrimination behaviors.
机译:神经科学的主要挑战是将神经元活动与动物行为联系起来。在嗅觉方面,对于在自由移动的动物中进行这些相关性研究,可以使用有限的技术。为了解决这个问题,我们开发了一种在头部受约束的小鼠中进行嗅觉行为分析的方法,该方法可以高度精确地监测行为反应。对小鼠进行“通过/不通过”操作条件调节模型的训练,以区分简单的单分子加味剂以及复杂的加味剂,例如单分子加味剂或天然加味剂的二元混合物。小鼠学会了在数百项试验中以高准确度区分简单和复杂的气味。然后,我们将头部受约束的小鼠的辨别性能与在自由移动的小鼠中观察到的性能进行了比较。两种行为范式中的歧视准确性均相当。另外,在动物表现良好的同时测量了分离时间。在这两个任务中,小鼠都在几百毫秒内分辨出简单的气味,并花费额外的时间来分辨复杂的混合物。总之,与自由移动的小鼠相比,在头部约束时,小鼠表现出相似且有效的辨别行为。因此,当动物积极地参与嗅觉辨别行为时,头部约束范例提供了一种监视神经元活动的相关方法。

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