Instituto de Investigación en Biomedicina de Buenos Aires (IBioBA)-CONICET-Partner Institute of the Max Planck Society, Godoy Cruz 2390, C1425FQD, Buenos Aires, Argentina.
Universidad de Buenos Aires, Facultad de Ciencias Exactas y Naturales, PhD Program, Buenos Aires, Argentina.
Nat Commun. 2024 Jul 2;15(1):5572. doi: 10.1038/s41467-024-49897-4.
Olfaction is influenced by contextual factors, past experiences, and the animal's internal state. Whether this information is integrated at the initial stages of cortical odour processing is not known, nor how these signals may influence odour encoding. Here we revealed multiple and diverse non-olfactory responses in the primary olfactory (piriform) cortex (PCx), which dynamically enhance PCx odour discrimination according to behavioural demands. We performed recordings of PCx neurons from mice trained in a virtual reality task to associate odours with visual contexts to obtain a reward. We found that learning shifts PCx activity from encoding solely odours to a regime in which positional, contextual, and associative responses emerge on odour-responsive neurons that become mixed-selective. The modulation of PCx activity by these non-olfactory signals was dynamic, improving odour decoding during task engagement and in rewarded contexts. This improvement relied on the acquired mixed-selectivity, demonstrating how integrating extra-sensory inputs in sensory cortices can enhance sensory processing while encoding the behavioural relevance of stimuli.
嗅觉受到环境因素、过去的经验和动物内部状态的影响。目前尚不清楚这些信息是否在皮质嗅觉处理的初始阶段被整合,也不知道这些信号如何影响气味编码。在这里,我们揭示了初级嗅觉(梨状皮层)(PCx)中多种不同的非嗅觉反应,这些反应根据行为需求动态增强了 PCx 的气味辨别能力。我们对在虚拟现实任务中接受训练的小鼠的 PCx 神经元进行了记录,以便将气味与视觉背景相关联以获得奖励。我们发现,学习将 PCx 活动从仅编码气味转变为一种状态,在这种状态下,位置、上下文和联想反应出现在对气味反应神经元上,这些神经元变得混合选择性。这些非嗅觉信号对 PCx 活动的调制是动态的,在任务参与和奖励背景下提高了气味解码能力。这种改善依赖于获得的混合选择性,证明了如何在感觉皮层中整合额外的感觉输入可以增强感觉处理,同时编码刺激的行为相关性。