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首页> 外文期刊>Journal of Neurophysiology >Differential coding by two olfactory subsystems in the honeybee brain
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Differential coding by two olfactory subsystems in the honeybee brain

机译:蜜蜂大脑中两个嗅觉子系统的差分编码

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摘要

Sensory systems use parallel processing to extract and process different features of environmental stimuli. Parallel processing has been studied in the auditory, visual, and somatosensory systems, but equivalent research in the olfactory modality is scarce. The honeybee Apis mellifera is an interesting model for such research as its relatively simple brain contains a dual olfactory system, with a clear neural dichotomy from the periphery to higher-order centers, based on two main neuronal tracts [medial (m) and lateral (l) antenno-protocerebral tract (APT)]. The function of this dual system is as yet unknown, and attributes like odor quality and odor quantity might be separately encoded in these subsystems. We have thus studied olfactory coding at the input of both subsystems, using in vivo calcium imaging. As one of the subsystems (m-APT) has never been imaged before, a novel imaging preparation was developed to this end, and responses to a panel of aliphatic odorants at different concentrations were compared in both subsystems. Our data show a global redundancy of olfactory coding at the input of both subsystems but unravel some specificities for encoding chemical group and carbon chain length of odor molecules.
机译:感觉系统使用并行处理来提取和处理环境刺激的不同特征。在听觉,视觉和体感系统中已经对并行处理进行了研究,但是在嗅觉方式上的等效研究却很少。蜜蜂Apis mellifera是一个有趣的研究模型,因为它相对简单的大脑包含双重嗅觉系统,并基于两个主要神经元道[内侧(m)和外侧( l)头颈前脑束(APT)]。这个双重系统的功能尚不明确,气味质量和气味数量等属性可能会在这些子系统中单独编码。因此,我们使用体内钙成像技术研究了两个子系统输入端的嗅觉编码。由于其中一个子系统(m-APT)从未进行过成像,因此开发了一种新颖的成像制剂,并在这两个子系统中比较了不同浓度的一组脂肪族气味剂的响应。我们的数据显示,在两个子系统的输入端,嗅觉编码具有全局冗余性,但揭示了编码气味分子的化学基团和碳链长度的一些特殊性。

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