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Maintaining accuracy at the expense of speed: stimulus similarity defines odor discrimination time in mice.

机译:以牺牲速度为代价保持准确性:刺激相似性定义了小鼠的气味辨别时间。

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摘要

Odor discrimination times and their dependence on stimulus similarity were evaluated to test temporal and spatial models of odor representation in mice. In a go/no-go operant conditioning paradigm, discrimination accuracy and time were determined for simple monomolecular odors and binary mixtures of odors. Mice discriminated simple odors with an accuracy exceeding 95%. Binary mixtures evoking highly overlapping spatiotemporal patterns of activity in the olfactory bulb were discriminated equally well. However, while discriminating simple odors in less than 200 ms, mice required 70-100 ms more time to discriminate highly similar binary mixtures. We conclude that odor discrimination in mice is fast and stimulus dependent. Thus, the underlying neuronal mechanisms act on a fast timescale, requiring only a brief epoch of odor-specific spatiotemporal representations to achieve rapid discrimination of dissimilar odors. The fine discrimination of highly similar stimuli, however, requires temporal integration of activity, suggesting a tradeoff between accuracy and speed.
机译:评价气味辨别时间及其对刺激相似性的依赖性,以测试小鼠气味表示的时间和空间模型。在通过/不通过操作条件调节范例中,确定了简单的单分子气味和气味的二元混合物的辨别准确性和时间。小鼠区分了简单的气味,准确度超过95%。同样很好地区分了在嗅球中引起高度重叠的时空活动模式的二元混合物。但是,在不到200毫秒的时间内辨别简单气味的同时,小鼠需要70-100毫秒的更多时间才能辨别高度相似的二元混合物。我们得出的结论是,小鼠的异味辨别是快速的并且依赖刺激。因此,潜在的神经元机制以快速的时间尺度起作用,仅需要短暂的气味特异性时空表示即可实现对不同气味的快速鉴别。但是,对高​​度相似的刺激进行精细区分需要活动的时间整合,这表明了准确性和速度之间的权衡。

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