Lee Donghyung, Lau Nathan, Liu Lillian, Root Cory M
bioRxiv. 2024 Jul 18:2023.08.01.551547. doi: 10.1101/2023.08.01.551547.
The ways in which sensory stimuli acquire motivational valence through association with other stimuli is one of the simplest forms of learning. Though we have identified many brain nuclei that play various roles in reward processing, a significant gap remains in understanding how valence encoding transforms through the layers of sensory processing. To address this gap, we carried out a comparative investigation of the anteromedial olfactory tubercle (OT), and the ventral pallidum (VP) - 2 connected nuclei of the basal ganglia which have both been implicated in reward processing. First, using anterograde and retrograde tracing, we show that both D1 and D2 neurons of the anteromedial OT project primarily to the VP and minimally elsewhere. Using 2-photon calcium imaging, we then investigated how the identity of the odor and reward contingency of the odor are differently encoded by neurons in either structure during a classical conditioning paradigm. We find that VP neurons robustly encode reward contingency, but not identity, in low-dimensional space. In contrast, the OT neurons primarily encode odor identity in high-dimensional space. Although D1 OT neurons showed larger responses to rewarded odors than other odors, consistent with prior findings, we interpret this as identity encoding with enhanced contrast. Finally, using a novel conditioning paradigm that decouples reward contingency and licking vigor, we show that both features are encoded by non-overlapping VP neurons. These results provide a novel framework for the striatopallidal circuit in which a high-dimensional encoding of stimulus identity is collapsed onto a low-dimensional encoding of motivational valence.
感觉刺激通过与其他刺激的关联获得动机效价的方式是最简单的学习形式之一。尽管我们已经确定了许多在奖励处理中发挥各种作用的脑核,但在理解效价编码如何在感觉处理层中转变方面仍存在重大差距。为了填补这一差距,我们对前内侧嗅结节(OT)和腹侧苍白球(VP)——基底神经节的两个相连核进行了比较研究,这两个核都与奖励处理有关。首先,使用顺行和逆行追踪,我们发现前内侧OT的D1和D2神经元主要投射到VP,而投射到其他地方的很少。然后,我们使用双光子钙成像技术,研究了在经典条件范式中,气味的身份和气味的奖励偶然性是如何在这两种结构中的神经元中被不同编码的。我们发现,VP神经元在低维空间中强烈编码奖励偶然性,但不编码身份。相比之下,OT神经元主要在高维空间中编码气味身份。尽管D1 OT神经元对有奖励的气味比其他气味表现出更大的反应,这与之前的发现一致,但我们将此解释为具有增强对比度的身份编码。最后,使用一种将奖励偶然性和舔舐活力解耦的新型条件范式,我们表明这两个特征由不重叠的VP神经元编码。这些结果为纹状体苍白球回路提供了一个新的框架,其中刺激身份的高维编码被压缩为动机效价的低维编码。