In the English language, there is generally a limited lexicon when referring to the sensations elicited by chemesthetic stimuli like capsaicin, allyl isothiocyanate, and eugenol, the orally irritating compounds found in chiles, wasabi, and cloves, respectively. Elsewhere, experts and novices have been shown to use language differently, with experts using more precise language. Here, we compare perceptual maps and word usage across three cohorts: experts with formal culinary education, naïve individuals with high Food Involvement Scale (FIS) scores, and naïve individuals with low FIS scores.
View Article and Find Full Text PDFDiners in a restaurant were served the same meal (composed of a sautéed chicken breast with a fines herbes sauce, brown rice pilaf, and sautéed green beans with toasted almonds served on a round white china plate). The same food was presented in two different arrangements on two different nights. Although the two presentations were judged as equally "neat", one was judged as more attractive.
View Article and Find Full Text PDFUnlabelled: As a base for sauces, soups, and cooking liquids for meats, grains, and vegetables, stocks can be integral to the overall quality of restaurant menu items, however, science-based studies on the effects of cooking methods on the physiochemical and sensory properties of stock are lacking. The effects of starting (22 °C, 85 °C, and 99 °C) and cooking temperatures (85 °C and 99 °C) of chicken stock on clarity, color, viscosity, protein content, amino acid content, mineral content, and overall liking were measured. Protein content and viscosity were significantly higher for stocks cooked at 99 °C, but no effect on amino acid content, color, or clarity was observed.
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