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Preference for Sucrose Solutions Modulates Taste Cortical Activity in Humans

机译:蔗糖溶液可调节人类的味觉皮质活性

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High time resolution is required to reliably measure neuronal activity in the gustatory cortex in response to taste stimuli. Hedonic aspects of gustatory processing have never been explored using gustatory evoked potentials (GEPs), a high-time-resolution technique. Our aim was to study cerebral processing of hedonic taste in humans using GEPs in response to sucrose solutions in subjects with different ratings of pleasantness regarding sucrose. In this exploratory study, 30 healthy volunteers were randomly stimulated with 3 sucrose solutions. The sucrose stimulus was presented to the tongue for 1 s 20 times. GEPs were recorded from 9 cortical sites with EEG sensors at Cz, Fz, Pz, C3, C4, F3, F4, Fp1, and Fp2 (10/20 system). The main result was that subjects who preferred the high-concentration (20 g/100 mL) sucrose solution had higher GEP amplitudes on the Pz, Cz, and Fz electrodes than did subjects who preferred the low-concentration (5 g/100 mL) or the moderate-concentration (10 g/100 mL) solutions regardless of stimulus intensity. The difference in P1N1 amplitude on the Pz, Cz, and Fz electrodes according to sucrose preference of the subjects was described with stronger significance with stimulation by the 20 g-sucrose solution than by the 5 and 10g sucrose solutions. Using the reliable and safe GEP technique, we provide an original demonstration of variability of the gustatory response on the Pz, Cz, and Fz electrodes according to a sweet preference in humans. Further studies are needed to correlate the electric signal recorded by surface electrodes to the neural generator.
机译:需要高时间分辨率才能可靠地测量味觉刺激对味觉皮质中神经元的活动。从来没有使用味觉诱发电位(GEPs)(一种高分辨技术)来探索味觉处理的特征。我们的目的是研究对蔗糖具有不同愉悦等级的受试者使用GEP响应蔗糖溶液对人的享乐主义口味的大脑处理。在这项探索性研究中,用3种蔗糖溶液随机刺激了30名健康志愿者。蔗糖刺激作用于舌头1次20次。使用EEG传感器从Cz,Fz,Pz,C3,C4,F3,F4,Fp1和Fp2(10/20系统)的9个皮质位点记录GEP。主要结果是,偏爱高浓度(20 g / 100 mL)蔗糖溶液的受试者在Pz,Cz和Fz电极上的GEP振幅高于偏偏于低浓度(5 g / 100 mL)的受试者或中等浓度(10 g / 100 mL)溶液,与刺激强度无关。描述了根据受试者的蔗糖偏爱,Pz,Cz和Fz电极上的P1N1振幅的差异在20 g蔗糖溶液刺激下比5和10g蔗糖溶液刺激具有更显着的意义。使用可靠且安全的GEP技术,我们根据人类的喜好提供了Pz,Cz和Fz电极上味觉响应变化的原始证明。需要进一步研究以将表面电极记录的电信号与神经发生器相关联。

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