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Газова хроматография-офлaктометрия×Електронен нос×HPLC×Анализ на текстурния профил×
ОбластНаука за хранитеНаука за хранитеНаука за хранитеНаука за храните
СемействоProcess / pipelineProcess / pipelineProcess / pipelineProcess / pipeline
Година на възникване1997198219701968
СъздателTerry AcreeKrishna PersaudCsaba HorváthMalcolm Bourne
ТипSensory-Instrumental CouplingChemical Sensing DeviceSeparation and Quantification TechniqueMechanical Texture Method
Основополагащ източникAcree, T. E. (1997). GC/Olfactometry. Analytical Chemistry, 69(5), 170A-175A. link ↗Persaud, K., & Dodd, G. (1982). Analysis of discrimination mechanisms in the mammalian olfactory system using a model nose. Nature, 299(5881), 352-355. DOI ↗Snyder, L. R., Kirkland, J. J., & Dolan, J. W. (2010). Introduction to modern liquid chromatography (3rd ed.). Wiley. DOI ↗Bourne, M. C. (1968). Texture profile of foods. Journal of Food Science, 33(3), 280-283. link ↗
Други названияGC-Oe-Nose, artificial olfactionHPLC, high-pressure liquid chromatographyTPA
Свързани3333
РезюмеGas Chromatography-Olfactometry (GC-O) combines the separation power of gas chromatography with human olfactory perception to identify which volatile compounds in a food sample contribute to its aroma. Developed by Acree and colleagues in the 1990s, GC-O allows researchers to bypass the human nose's inability to consciously identify which of many simultaneous odors they are perceiving, replacing the 'olfactory bulb' with a trained human panelist.An electronic nose (e-nose) is an instrumental analytical device that mimics the mammalian olfactory system to detect and identify volatile organic compounds (odors) in food products. Developed by Persaud and Dodd in 1982, e-noses use arrays of non-selective chemical sensors combined with pattern recognition algorithms to create electronic signatures of food aromas, enabling objective, rapid quality assessment and shelf-life prediction.High-Performance Liquid Chromatography (HPLC) is an analytical technique that separates, identifies, and quantifies components in a complex food sample by passing the sample through a pressurized column packed with a stationary phase. Developed by Horváth in the early 1970s, HPLC enables rapid, sensitive measurement of nutrients, contaminants, additives, and bioactive compounds in food products with high precision and accuracy.Texture Profile Analysis (TPA) is an objective, mechanical method that simulates mastication (chewing) to measure the textural properties of food products. Developed by Bourne in 1968, TPA uses a texture analyzer (a machine that applies defined forces and movements to a sample) to generate a force-time curve from which multiple texture attributes (hardness, springiness, chewiness, cohesiveness, adhesiveness) are extracted and quantified.
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ScholarGateСравнение на методи: Gas Chromatography-Olfactometry · Electronic Nose · HPLC · Texture Profile Analysis. Извлечено на 2026-06-19 от https://scholargate.app/bg/compare