The John B Pierce Laboratory, 290 Congress Ave, New Haven, CT 06519, USA.
Chem Senses. 2010 Oct;35(8):693-703. doi: 10.1093/chemse/bjq068. Epub 2010 Jun 30.
Taste, which is almost always accompanied by other oral sensations, serves to identify potential nutrients and toxins. The present study was designed to determine the influence of sensory modality (chemesthetic vs. gustatory) and physiological significance (potentially nutritive vs. potentially harmful) on insular response to oral stimulation. Sixteen subjects underwent functional magnetic resonance imaging scanning while receiving 2 potentially nutritive solutions (sucrose and NaCl), 2 potentially harmful solutions (quinine and capsaicin, a chemesthetic stimulus), and a tasteless control solution. We identified a region of anterior ventral insula that responded to oral stimulation irrespective of modality or physiological significance. However, when subjects tasted a potentially nutritive stimulus, the connectivity between the insula and a feeding network including the hypothalamus, ventral pallidum, and striatum was greater than when tasting a potentially harmful stimulus. No differential connectivity was observed as a function of modality (gustatory vs. chemesthetic). These results support the existence of an integrated supramodal flavor system in the anterior ventral insula that preferentially communicates with the circuits guiding feeding when the flavor is potentially nutritive.
味觉通常伴随着其他口腔感觉,有助于识别潜在的营养物质和毒素。本研究旨在确定感觉模态(化学感觉与味觉)和生理意义(潜在营养与潜在有害)对口腔刺激引起的岛叶反应的影响。16 名受试者在接受 2 种潜在营养溶液(蔗糖和 NaCl)、2 种潜在有害溶液(奎宁和辣椒素,化学感觉刺激)和无味对照溶液的同时接受了功能磁共振成像扫描。我们发现,前腹侧脑岛对口腔刺激有反应,而与模态或生理意义无关。然而,当受试者品尝潜在的营养刺激物时,岛叶与包括下丘脑、腹侧苍白球和纹状体在内的进食网络之间的连通性大于品尝潜在有害刺激物时。作为功能的函数,没有观察到模态(味觉与化学感觉)之间的差异连通性。这些结果支持在腹侧前脑岛存在一个整合的超模态味觉系统,当味觉具有潜在的营养性时,该系统优先与指导进食的回路进行交流。