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A Human Gastric Simulator (HGS) to Study Food Digestion in Human Stomach

Journal of Food Science · 2010 · Vol. 75(9) · pp. E627–35
Fanbin KongR. Paul Singh

Abstract

The objective of this study was to develop an in vitro stomach model, the Human Gastric Simulator (HGS), for studying gastric digestion of foods. The HGS is designed in such a way as to simulate the continuous peristaltic movement of stomach walls, with similar amplitude and frequency of contraction forces as reported in vivo. The HGS mainly consists of a latex vessel, simulating the stomach chamber, and a series of rollers secured on belts that are driven by motor and pulleys to create a continuous contraction of the latex wall. It also incorporates gastric secretion, emptying systems, and temperature control that enable accurate simulation of dynamic digestion process for detailed investigation of the changes in the physical chemical properties of ingested foods. The simulated gastric contraction force demonstrates a similar pattern as in vivo stomach forces. The precise control of gastric secretion and emptying and the adjustable mechanical forces in the HGS provide a useful tool to study transformation of food constituents under simulated physiological conditions.

Gastrointestinal motility and disordersDiet and metabolism studiesDigestive system and related healthStomachHuman stomachGastric emptyingPeristalsisDigestion (alchemy)Contraction (grammar)In vivoChemistryMaterials scienceChromatography

MeSH terms

DigestionGastric EmptyingGastric JuiceGastric MucosaGastrointestinal ContentsHumansHydrogen-Ion ConcentrationKineticsModels, BiologicalParticle SizePeristalsisOryzaMalusChemical Phenomena

Funding

  • U.S. Department of Agriculture
Citations
408
FWCI
9.03
field-weighted impact
References
22
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References
Disintegration of Solid Foods in Human Stomach
Journal of Food Science · 2008 · 579 citations
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