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Temporal Sensory Perceptions of Sugar-Reduced 3D Printed Chocolates

Khemiga Khemacheevakul, John Wolodko, Ha Nguyen, Wendy V. Wismer

2021Foods33 citationsDOIOpen Access PDF

Abstract

Sugar-reduced chocolates with desirable sensory qualities and sweetness can be created using a 3D printer by layering chocolates with different sugar concentrations. This study aimed to evaluate the temporal sensory profile, perceived sweetness intensity, and acceptance of prototype sugar-reduced and non-sugar-reduced 3D printed chocolates. A consumer panel (n = 72) evaluated the sensory profiles of six-layered chocolates. Sensory profiles were determined by temporal dominance of sensations (TDS), overall sweetness by a five-point intensity scale, overall liking by the nine-point hedonic scale, and differences among chocolates over time were visualized by principal component analysis (PCA). Layering by 3D printing achieved a 19% reduction in sugar without changes in the perceived overall sweetness and overall liking. Layering order of high and low sugar chocolate influenced the perceived overall sweetness and temporal sensory profiles of 3D printed chocolates with different total sugar concentrations. The dominance of attributes associated with milk chocolate was observed to increase sweetness perception while the dominance of attributes associated with dark chocolate was observed to decrease overall sweetness perception. Three-dimensional food printing technology is progressing rapidly, and further sugar reduction could be achieved with refined research methods.

Topics & Concepts

SweetnessSugarDark chocolateFood scienceMilk ChocolateSensory systemPerceptionAdded sugarChemistryPsychologyCognitive psychologyNeuroscienceSensory Analysis and Statistical MethodsMeat and Animal Product QualityColor perception and design
Temporal Sensory Perceptions of Sugar-Reduced 3D Printed Chocolates | Litcius