Department of Neurobiology and Behavior and Graduate Program in Neuroscience, State University of New York at Stony Brook, Stony Brook, New York 11794.
J Neurosci. 2013 Nov 27;33(48):18966-78. doi: 10.1523/JNEUROSCI.2974-13.2013.
Most of the research on cortical processing of taste has focused on either the primary gustatory cortex (GC) or the orbitofrontal cortex (OFC). However, these are not the only areas involved in taste processing. Gustatory information can also reach another frontal region, the medial prefrontal cortex (mPFC), via direct projections from GC. mPFC has been studied extensively in relation to its role in controlling goal-directed action and reward-guided behaviors, yet very little is known about its involvement in taste coding. The experiments presented here address this important point and test whether neurons in mPFC can significantly process the physiochemical and hedonic dimensions of taste. Spiking responses to intraorally delivered tastants were recorded from rats implanted with bundles of electrodes in mPFC and GC. Analysis of single-neuron and ensemble activity revealed similarities and differences between the two areas. Neurons in mPFC can encode the chemosensory identity of gustatory stimuli. However, responses in mPFC are sparser, more narrowly tuned, and have a later onset than in GC. Although taste quality is more robustly represented in GC, taste palatability is coded equally well in the two areas. Additional analysis of responses in neurons processing the hedonic value of taste revealed differences between the two areas in temporal dynamics and sensitivities to palatability. These results add mPFC to the network of areas involved in processing gustatory stimuli and demonstrate significant differences in taste-coding between GC and mPFC.
大多数关于味觉皮质处理的研究都集中在初级味觉皮质 (GC) 或眶额皮质 (OFC) 上。然而,这些并不是参与味觉处理的唯一区域。味觉信息也可以通过 GC 的直接投射到达另一个额前区域,即内侧前额皮质 (mPFC)。mPFC 因其在控制目标导向行动和奖励引导行为方面的作用而被广泛研究,但对于其在味觉编码中的作用知之甚少。这里呈现的实验解决了这一重要问题,并测试了 mPFC 中的神经元是否能够显著处理味觉的生理化学和享乐维度。通过在 mPFC 和 GC 中植入电极束,从大鼠记录到口腔内给予味觉刺激时的尖峰反应。对单个神经元和神经元集合活动的分析揭示了这两个区域之间的相似之处和差异。mPFC 中的神经元可以编码味觉刺激的化学感觉身份。然而,mPFC 中的反应稀疏,调谐更窄,并且比 GC 中的反应出现得晚。尽管味觉质量在 GC 中得到了更有力的表示,但在两个区域中,味觉的可接受性同样可以很好地编码。对处理味觉享乐值的神经元反应的进一步分析揭示了两个区域在时间动态和对可接受性的敏感性方面的差异。这些结果将 mPFC 添加到参与处理味觉刺激的区域网络中,并证明了 GC 和 mPFC 之间在味觉编码方面存在显著差异。