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Odorant Detection and Discrimination in the Olfactory System

机译:嗅觉系统中的气味检测和辨别

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The olfactory system excels in both discrimination and detection of odorants. In mammals, it reliably discriminates more than 3000 structurally diverse odorant molecules and has an amazingly high sensitivity that allows the detection of very low amounts of specific odorant molecules. In addition, the olfactory system has the capability to adapt to ambient odorants, allowing the recognition of a broad range of stimuli. The discrimination among different odorants is achieved by using hundreds of receptors, activated with a combinatorial code. Olfactory transduction uses a canonical second messenger system providing two critical attributes: amplification and high signal-to-noise characteristics, giving the system its remarkable detector capabilities. In this review, we present an introduction to the basic molecular mechanisms of olfactory transduction in olfactory sensory neurons.
机译:嗅觉系统擅长歧视和检测气味剂。在哺乳动物中,它可靠地识别超过3000个结构不同的气味分子,并且具有令人惊异的高灵敏度,允许检测非常低量的特异性气味分子。此外,嗅觉系统具有适应环境气味的能力,允许识别广泛的刺激。通过使用数百种受体,用组合代码激活来实现不同气味的歧视。嗅觉转换使用规范的第二信使系统提供了两个关键的属性:放大和高信噪比,使系统成为其显着的探测器功能。在本综述中,我们介绍了嗅觉感觉神经元嗅转导的基本分子机制的介绍。

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