Quantitative magnetic resonance imaging of in vitro gastrointestinal digestion of a bread and cheese meal.
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M. Musse | S. Quellec | S. Challois | G. Collewet | M. Morzel | F. Nau | S. Le Feunteun | T. Lucas | Jordane Ossemond | Mattéi Ravilly
[1] I. Souchon,et al. The contribution of gastric digestion of starch to the glycaemic index of breads with different composition or structure. , 2022, Food & function.
[2] P. Smeets,et al. Non-invasive monitoring of in vitro gastric milk protein digestion kinetics by 1H NMR magnetization transfer. , 2022, Food chemistry.
[3] P. Smeets,et al. Monitoring pH and whey protein digestion by TD-NMR and MRI in a novel semi-dynamic in vitro gastric simulator (MR-GAS) , 2021, Food Hydrocolloids.
[4] Pierre-Sylvain Mirade,et al. Mathematical modelling of food hydrolysis during in vitro digestion: From single nutrient to complex foods in static and dynamic conditions , 2021, Trends in Food Science & Technology.
[5] L. Marciani,et al. Size and Number of Food Boluses in the Stomach after Eating Different Meals: Magnetic Resonance Imaging Insights in Healthy Humans , 2021, Nutrients.
[6] J. Jardin,et al. In vitro dynamic digestion of model infant formulae containing lactoferrin and medium chain triacylglycerols , 2021 .
[7] C. Rondeau-Mouro,et al. Gas cell opening in bread dough during baking , 2021, Trends in Food Science & Technology.
[8] E. Capuano,et al. Food Matrix and Macronutrient Digestion. , 2021, Annual review of food science and technology.
[9] M. Musse,et al. Impact of chemical exchange on transverse relaxation at low and moderate magnetic field strengths for sugar solutions representative of fruit tissues analyzed by simulation and MRI experiments. , 2020, Journal of magnetic resonance.
[10] A. Brodkorb,et al. A standardised semi-dynamic in vitro digestion method suitable for food - an international consensus. , 2020, Food & function.
[11] H. As,et al. Exploring in vitro gastric digestion of whey protein by time-domain nuclear magnetic resonance and magnetic resonance imaging , 2020, Food Hydrocolloids.
[12] W. Macnaughtan,et al. The state of water and fat during the maturation of Cheddar cheese. , 2020, Food chemistry.
[13] I. Souchon,et al. Gastro-intestinal in vitro digestions of protein emulsions monitored by pH-stat: Influence of structural properties and interplay between proteolysis and lipolysis. , 2019, Food chemistry.
[14] S. Le Feunteun,et al. Inhibitory effect of black tea, lemon juice, and other beverages on salivary and pancreatic amylases: What impact on bread starch digestion? A dynamic in vitro study. , 2019, Food chemistry.
[15] B. Blümich,et al. Applications of magnetic resonance imaging in chemical engineering , 2019, Physical Sciences Reviews.
[16] M. Corredig,et al. INFOGEST static in vitro simulation of gastrointestinal food digestion , 2019, Nature Protocols.
[17] M. Panouillé,et al. The important role of salivary α-amylase in the gastric digestion of wheat bread starch. , 2018, Food & function.
[18] E. Lutton,et al. Exploring the breakdown of dairy protein gels during in vitro gastric digestion using time-lapse synchrotron deep-UV fluorescence microscopy. , 2018, Food chemistry.
[19] Dominique Franson,et al. Recent advances in parallel imaging for MRI. , 2017, Progress in nuclear magnetic resonance spectroscopy.
[20] S. Turgeon,et al. Disintegration and nutrients release from cheese with different textural properties during in vitro digestion , 2016 .
[21] M. Panouillé,et al. Kinetics of bread crumb hydration as related to porous microstructure. , 2016, Food & function.
[22] M. Panouillé,et al. Breakdown pathways during oral processing of different breads: impact of crumb and crust structures. , 2016, Food & function.
[23] R. Singh,et al. Computational modelling of gastric digestion: Current challenges and future directions , 2015 .
[24] L. Marciani,et al. Aerated drinks increase gastric volume and reduce appetite as assessed by MRI: a randomized, balanced, crossover trial. , 2015, The American journal of clinical nutrition.
[25] M. Corredig,et al. A standardised static in vitro digestion method suitable for food - an international consensus. , 2014, Food & function.
[26] Maja Musse,et al. MSE-MRI sequence optimisation for measurement of bi- and tri-exponential T2 relaxation in a phantom and fruit. , 2013, Magnetic resonance imaging.
[27] G. Mucchetti,et al. Cheese True Density Prediction by Linear Equations , 2013 .
[28] A. Mackie,et al. Specific food structures supress appetite through reduced gastric emptying rate. , 2013, American journal of physiology. Gastrointestinal and liver physiology.
[29] Diego Hernando,et al. Robust water/fat separation in the presence of large field inhomogeneities using a graph cut algorithm , 2009, Magnetic resonance in medicine.
[30] A. Woda,et al. Particle size distribution in the food bolus after mastication of natural foods , 2007 .
[31] L. Marciani,et al. Enhancement of intragastric acid stability of a fat emulsion meal delays gastric emptying and increases cholecystokinin release and gallbladder contraction. , 2007, American journal of physiology. Gastrointestinal and liver physiology.
[32] Ashim K. Datta,et al. Porous media characterization of breads baked using novel heating modes , 2007 .
[33] P. Upreti,et al. Influence of calcium and phosphorus, lactose, and salt-to-moisture ratio on Cheddar cheese quality: pH buffering properties of cheese. , 2006, Journal of dairy science.
[34] F. Gaucheron,et al. Buffering capacity of dairy products , 2005 .
[35] V. Guillard,et al. Moisture Diffusivity in Sponge Cake as Related to Porous Structure Evaluation and Moisture Content , 2003 .
[36] Martin G. Scanlon,et al. Prediction of Bread Crumb Density by Digital Image Analysis , 1999 .
[37] F. Saura-calixto,et al. A starch hydrolysis procedure to estimate glycemic index , 1997 .
[38] R Langer,et al. Erosion kinetics of hydrolytically degradable polymers. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[39] B. Hills,et al. Proton NMR relaxation studies of aqueous polysaccharide systems , 1991 .
[40] J. Meyer,et al. Passage of salivary amylase through the stomach in humans , 1987, Digestive Diseases and Sciences.
[41] J. Floury,et al. Pepsin activity as a function of pH and digestion time on caseins and egg white proteins in static in vitro conditions , 2021, Food & Function.
[42] J. Idier,et al. Quantification of mass fat fraction in fish using water-fat separation MRI. , 2016, Magnetic resonance imaging.
[43] Henk Van As,et al. MRI of plants and foods. , 2013, Journal of magnetic resonance.
[44] D. Mcclements,et al. 18 – Physicochemical and structural aspects of lipid digestion , 2007 .