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首页> 外文期刊>Apidologie >Dynamics of sensory processing in the dual olfactory pathway of the honeybee. (Special issue on current concepts in honeybee neurophysiology.)
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Dynamics of sensory processing in the dual olfactory pathway of the honeybee. (Special issue on current concepts in honeybee neurophysiology.)

机译:蜜蜂双嗅觉途径中感觉处理的动力学。 (有关蜜蜂神经生理学当前概念的特刊。)

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摘要

Insects identify and evaluate behaviorally relevant odorants in complex natural scenes where odor concentrations and mixture composition can change rapidly. This requires fast and reliable information processing in the olfactory system. Here, we review recent experimental findings and theoretical hypotheses on olfactory processing in the honeybee with a focus on its temporal dynamics. Specifically we address odor response characteristics of antennal lobe interneurons and projection neurons, local processing of elemental odors and odor blends, the functional role of the dual olfactory pathway in the honeybee, population coding in uniglomerular projection neurons, and a novel model for sparse and reliable coding in projection neurons and mushroom body Kenyon cells. It is concluded that the olfactory system of the honeybee implements a fast and reliable coding scheme optimized for processing dynamic input within the behaviorally relevant temporal range.Digital Object Identifier http://dx.doi.org/10.1007/s13592-012-0131-3
机译:在复杂的自然场景中,昆虫会识别并评估与行为相关的气味,在这些自然场景中,气味浓度和混合物成分会快速变化。这就需要在嗅觉系统中进行快速可靠的信息处理。在这里,我们回顾了蜜蜂的嗅觉处理的最新实验发现和理论假设,重点是蜜蜂的时间动态。具体来说,我们解决触角叶间神经元和投射神经元的气味响应特征,元素气味和气味混合物的局部处理,蜜蜂中双嗅觉途径的功能作用,单球投射神经元中的种群编码以及稀疏和可靠的新型模型投射神经元和蘑菇体Kenyon细胞中的编码。结论是,蜜蜂的嗅觉系统实现了一种快速可靠的编码方案,该方案针对在行为相关的时间范围内处理动态输入进行了优化.Digital Object Identifier http://dx.doi.org/10.1007/s13592-012-0131- 3

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