Altay, F., Gunasekaran, S., Influence of drying temperature, water content, and heating rate on gelatinization of corn starches (2006) J. Agric. Food Chem., 54, pp. 4235-4245
Atwell, W.A., The terminology associated with basic starch phenomena (1988) Cereal Foods World, 33, pp. 306-311
Biliaderis, C.G., Maurice, T.J., Vose, J.R., Starch gelatinization phenomena studied by differential scanning calorimetry (1980) J. Food Sci., 45, pp. 1669-1680
Blazek, J., Copeland, L., Pasting and swelling properties of wheat flour and starch in relation to amylose content (2008) Carbohydr. Polym., 71, pp. 380-387
Buléon, A., Colonna, P., Leloup, V., Les amidons et leurs dérivés dans les industries des céréales (1990) Ind. Aliment. Agric., 6, pp. 515-531
Chanvrier, H., Colonna, P., Della Valle, D., Lourdin, D., Structure and mechanical behavior of corn flour and starch-zein based materials in the glassy state (2005) Carbohydr. Polym., 59, pp. 109-119
Christianson, D.D., Bagley, E.B., Apparent viscosity of dispersions of swollen cornstarch granules (1983) Cereal Chem., 60 (2), pp. 116-121
Cooke, D., Gidley, M.J., Loss of crystalline and molecular order during starch gelatinization: Origin of the anthalpic transition (1992) Carbohydr. Res., 227, pp. 103-112
della Valle, G., Colonna, P., Vergnes, B., Texturation des biopolymères en milieux concentrés (2006) Mise en æuvre des matières agroalimentaires, 2, pp. 113-166. , In: Colonna P. & Della Valle G., eds, Paris: Lavoisier
Donovan, J.W., Phase transitions of the starch-water system (1979) Biopolymers, 18, pp. 263-275
Donovan, W., Lorenz, K., Kulp, K., Differential scanning calorimetry of heat-moisture treated wheat and potato starches (1983) Cereal Chem., 60 (5), pp. 381-387
Doublier, J.L., Llamas, G., le Meur, M.A., Rheological investigation of cereal starch pastes and gels. Effect of pasting procedures (1987) Carbohydr. Polym., 7, pp. 251-257
Evans, I.D., Lips, A., Viscoelasticity of gelatinized starch dispersions (1992) J. Texture Stud., 23, pp. 69-86
Fannon, J.E., Hauber, R.J., BeMiller, J.N., Surface pores of starch granules (1992) Cereal Chem., 69 (3), pp. 284-288
Flory, P., (1971) Principles of polymer chemistry, , Ithaca, NY, USA
London: Cornell University Press
Fredriksson, H., The influence of amylose and amylopectin characteristics on gelatinization and retrogradation properties of different starches (1998) Carbohydr. Polym., 35, pp. 119-134
French, D., Organisation of starch granules (1984) Starch: Chemistry and technology, , In: Whistler R.L., Bemiller J.N. &
Paschall E.F., eds, 2nd ed. New York, USA: Academic Press Inc
Gelders, G., (2005) Structure and properties of maltodextrins and their lipid inclusion complexes, , PhD thesis: Katholieke Universiteit Leuven (Belgium)
Gelders, G.G., Vanderstuken, T.C., Goesaert, H., Delcour, J.A., Amylose-lipid complexation: A new fractionation method (2004) Carbohydr. Polym., 56, pp. 447-458
Hardacre, A.K., Clark, S.M., The effect of hybrid and growing environment on the rheological properties of starch and flour from maize (Zea mays L.) grain dried at four temperatures (2006) Int. J. Food Sci. Technol., 41, pp. 144-150
Hermansson, A.-M., Svegmark, K., Developments in the understanding of starch functionality (1996) Trends Food Sci. Technol., 7, pp. 345-353
Hizukuri, S., Relationship between the distribution of the chain length of amylopectine and the crystalline structure of starch granules (1985) Carbohydr. Res., 141, pp. 295-306
Hizukuri, S., Takeda, Y., Yasuda, M., Multi-branched nature of amylose and the action of debranching enzymes (1981) Carbohydr. Res., 91, pp. 205-213
Hoover, R., Manuel, H., The effect of heat-moisture treatment on the structure and physicochemical properties of normal maize, waxy maize, dull waxy maize and amylomaize V starches (1996) J. Cereal Sci., 23, pp. 153-162
Imberty, A., The double-helical nature of the crystalline part of A-starch (1988) J. Mol. Biol., 201, pp. 365-378
Imberty, A., Buléon, A., Tran, V., Pérez, S., Recent advances in knowledge of starch (1991) Starch, 43 (10), pp. 375-384
Ito, T., Effect of raw and heat-moisture-treated high-amylose corn starches on the process of digestion in the rat digestive tract (1999) J. Sci. Food Agric., 79, pp. 1203-1207
Jacobs, H., (1998) Impact of annealing on physico-chemical properties of starch, , PhD thesis: Katholieke Universiteit Leuven (Belgium)
Jacobs, H., Delcour, J.A., Hydrothermal modification of granular starch, with retention of the granular structure: A review (1998) J. Agric. Food Chem., 48 (8), pp. 2895-2905
Jacobson, M.R., Obanni, M., BeMiller, J.N., Retrogradation of starches from different botanical sources (1997) Cereal Chem., 74 (5), pp. 511-518
Jaisut, D., Effects of drying temperature and tempering time on starch digestibility of brown fragrant rice (2008) J. Food Eng., 86, pp. 251-258
Jane, J., Effects of amylopectin branch chain length and amylose content on the gelatinization and pasting of starch (1999) Cereal Chem., 76 (5), pp. 629-637
Jenkins, P.J., Donald, A.M., The influence of amylose on starch granule structure (1995) Int. J. Biol. Macromol., 17 (6), pp. 315-321
Jenkins, P.J., Donald, A.M., Application of smallangle neutron scattering to the study of the structure of starch granules (1996) Polymer, 25, pp. 5559-5568
Jenkins, P.J., Donalds, A.M., Gelatinisation of starch: A combined SAXS/WAXS/DSC and SANS study (1998) Carbohydr. Res., 308, pp. 133-147
Ji, Y., Waxy maize starch subpopulations with different gelatinization temperatures (2004) Carbohydr. Polym., 57, pp. 177-190
Jouppila, K., Kansikas, J., Roos, Y.H., Factors affecting crystallization and crystallization kinetics in amorphous corn starch (1998) Carbohydr. Polym., 36, pp. 143-149
Kalichevsky, A., The glass transition of amylopectine measured by DSC, DMTA and NMR (1992) Carbohydr. Polym., 18, pp. 77-88
Kar, A., Influence of lipid extraction process on the rheological characteristics, swelling power, and granule size of rice starches in excess water (2005) J. Agric. Food. Chem., 53, pp. 8259-8264
Karim, A.A., Norziah, M.H., Seow, C.C., Methods for the study of starch retrogradation (2000) Food Chem., 71, pp. 9-36
Kaur, K., Singh, N., Amylose-lipid complex formation during cooking of rice flour (2000) Food Chem., 71, pp. 511-517
Keetels, C., (1995) Retrogradation of concentrated starch systems
mechanism and consequences for product properties, , PhD thesis: Wageningen University (The Netherlands)
Kim, W.S., Seib, P.A., Apparent restriction of swelling in cooked noodles by lipids in some commercial wheat flours (1993) Cereal Chem., 70 (4), pp. 367-372
Kishida, T., Nogami, H., Himeno, S., Ebihara, K., Heat-moisture treatment of high amylose cornstarch increases its resistant starch content but not its physiologic effects in rats (2001) J. Nutr., 131, pp. 2716-2721
Kugimiya, M., Donovan, J.W., Wong, R.Y., Transitions of amylose-lipid complexes in starch: A calorimetric study (1980) Starch, 32 (8), pp. 265-270
Kweon, M., Slade, L., Levine, H., Role of glassy and crystalline transitions in the responses of corn starches to heat and high pressure treatments: Prediction of solute-induced barostability from solute-induced thermostability (2008) Carbohydr. Polym., 72, pp. 293-299
le Meste, M., Simatos, D., La transition vitreuse: Incidences en technologie alimentaire (1990) Ind. Aliment. Agric., 107, pp. 5-11
Li, J., Berke, T.G., Glover, D.V., Variation of thermal properties of starch in tropical maize germ plasm (1994) Cereal Chem., 71 (1), pp. 87-90
Lim, S.-T., Chang, E.-H., Chung, H.-J., Thermal transition characteristics of heat-moisture treated corn and potato starches (2001) Carbohydr. Polym., 46, pp. 107-115
Liu, X., Heat-moisture treatment of high-amylose corn starch increases dietary fiber content and lowers plasma cholesterol in ovariectomized rats (2007) J. Food Sci., 72 (9), pp. s652-s658
Lorenz, K., Kulp, K., Cereal-and root starch modification by heat-moisture treatment. I. Physicochimical properties (1982) Starch, 34 (2), pp. 50-54
Lu, T.-J., Duh, C.-S., Lin, J.-H., Chang, Y.-H., Effect of granular characteristics on the viscoelastic properties of composites of amylose and waxy starches (2007) Food Hydrocolloids, 22, pp. 164-173
Maache-Rezzoug, Z., Structural modifications and thermal transitions of standard maize starch after D.I.C. hydrothermal treatment (2008) Carbohydr. Polym., 74 (4), pp. 802-812
Mabit, J., Loisel, C., Fayolle, F., Legrand, J., Determination of volume fraction submitted to high shear in a scrapped surface heat exchanger (2003) J. Food Eng., 57, pp. 165-172
Malumba, P., Influence of drying temperature on functional properties of wet-milled starch granules (2009) Carbohydr. Polym., 75, pp. 299-306
Malumba, P., Comparative study of the effect of drying temperatures and heat-moisture treatment on the physicochemical and functional properties of corn starch (2010) Carbohydr. Polym., 79, pp. 633-641
Marchant, J.L., Blanshard, M.V., Studies of the dynamics of the gelatinization of starch granules employing a small angle light scattering system (1978) Starch, 30 (8), pp. 257-264
Mikus, F.F., Hixon, R.M., Rundle, R.E., The complexes of fatty acids with amylose (1946) J. Am. Chem. Soc., 68, pp. 1115-1123
Miles, M.J., Morris, V.J., Orford, P.D., Ring, S.G., The roles of amylose and amylopectin in the gelation and retrogradation of starch (1985) Carbohydr. Res., 135, pp. 271-281
Morris, V.J., Starch gelation and retrogradation (1990) Trends. Food Sci. Technol., 1, pp. 2-6
Mua, J.P., Jackson, D.S., Relationships between functional attributes and molecular structure of amylose and amylopectin fractions from corn starch (1997) J. Agric. Food Chem., 45, pp. 3848-3854
Mua, J.P., Jackson, D.S., Retrogradation and gel textural attributes of corn starch amylose and amylopectine fractions (1998) J. Cereal Sci., 27, pp. 157-166
Nakazawa, Y., Wang, Y.-J., Effect of annealing on starch-palmitic acid interaction (2004) Carbohydr. Polym., 57, pp. 327-335
Nayouf, M., Loisel, C., Doublier, J.L., Effect of thermomechanical treatment on the rheological properties of crosslinked waxy corn starch (2003) J. Food Eng., 59, pp. 209-219
Oates, C.G., Towards an understanding of starch granule structure and hydrolysis (1997) Trends Food Sci. Technol., 8 (11), pp. 375-382
Olayinka, O.O., Adebowale, K.O., Olu-Owolabi, B.I., Effect of heat-moisture treatment on physicochemical properties of white sorghum starch (2008) Food Hydrocolloids, 22 (2), pp. 225-230
Paterson, J.L., Hardacre, A., Li, P., Rao, M.A., Rheology and granule size distribution of corn starch dispersions from two genotypes and grown in four regions (2001) Food Hydrocolloids, 15, pp. 453-459
Rahman, S., Resistant starch in cereals: Exploiting genetic engineering and genetic variation (2007) J. Cereal Sci., 46, pp. 251-260
Raphaelides, S., Georgiadis, N., Effect of fatty acids on the rheological behaviour of amylomaize starch dispersions during heating (2008) Food Res. Int., 41, pp. 75-88
Reichter, E.T., (1913) The differentiation and specificity of starches in relation to genera, species, etc.: The stereochemistry applied to protoplasmic processes and products, and as a strictly scientific basis for the classification of plants and animals. Part I, , Washington, D.C., USA: Carnegie Institution of Washington
Roos, Y., Characterization of food polymers using state diagrams (1995) J. Food Eng., 24, pp. 339-360
Sahai, D., Jackson, D.S., Structure and chemical properties of partially heated corn starch granules (1994) Starch, 46 (12), pp. 457-463
Sahai, D., Jackson, D.S., Structural and chemical properties of native corn starch granules (1996) Starch, 48, pp. 249-255
Saito, K., Effect of raw and heat-moisture treated high-amylose corn starch on fermentation by the rat cecal bacteria (2001) Starch, 53, pp. 424-430
Sandhu, K.S., Singh, N., Kaur, M., Characteristics of the different corn types and their grain fractions: Physicochemical, thermal, morphological, and rheological properties of starches (2004) J. Food Eng., 64, pp. 119-127
Sandhu, K.S., Singh, N., Malhi, N.S., Physicochemical and thermal properties of starches separated from corn produced from crosses of two germ pools (2005) Food Chem., 89, pp. 541-548
Sandhu, K.S., Singh, N., Some properties of corn starches II: Physicochemical, gelatinization, retrogradation, pasting and textural properties (2007) Food Chem., 101, pp. 1499-1507
Schoch, T., Williams, C., Adsorption of fatty acid by the linear component of corn starch (1944) J. Am. Chem. Soc., 66, p. 1232
Seetharaman, K., Thermal and functional characterization of starch from Argentinean corn (2001) Cereal Chem., 78, pp. 379-386
Shogren, R.L., Effect of moisture-content on the melting and subsequent physical aging of corn starch (1992) Carbohydr. Polym., 19, pp. 83-90
Simatos, D., Propriétés de l'eau dans les produits alimentaires: Activité de l'eau, diagrammes de phase et d'états (2002) L'eau dans les aliments, pp. 49-83. , In: Le Meste M., Simatos D. & Lorient D., eds, Paris: Lavoisier
Singh, N., Morphological, thermal and rheological properties of starches from different botanical sources (2003) Food Chem., 81, pp. 219-231
Slade, L., Levine, H., Non-equilibrium melting granular starch: Part I. Temperature location of the glass transition associated with gelatinization of A-type cereal starches (1988) Carbohydr. Polym., 8, pp. 183-208
Slade, L., Levine, H., Beyond water activity: Recent advances based on an alternative approach to the assessment of food quality and safety (1991) Crit. Rev. Food Sci. Nutr., 30, pp. 115-360
Spigno, G., de Faveri, D.M., Gelatinization kinetics of rice starch studied by non-isothermal calorimetric technique: Influence of extraction method, water concentration and heating rate (2004) J. Food Eng., 62, pp. 337-344
Stute, R., Hydrothermal modification of starches: The difference between annealing and heat/moisturetreatment (1992) Starch, 44 (6), pp. 205-214
Svensson, E., Eliasson, A.-C., Crystalline changes in native wheat and potato starches at intermediate water levels during gelatinization (1995) Carbohydr. Polym., 26, pp. 171-176
Tang, H., Mitsunaga, T., Kawamura, Y., Molecular arrangement in blocklets and starch granule architecture (2006) Carbohydr. Polym., 63, pp. 555-560
Tester, R., Morrison, W.R., Swelling and gelatinization of cereal starches. I. Effects of amylopectin, amylose, and lipids (1990) Cereal Chem., 67, pp. 551-557
Tolstoguzov, V., Thermodynamic considerations of starch functionality in foods (2003) Carbohydr. Polym., 51, pp. 99-111
Tsai, M., Li, C., Lii, C., Effect of granular structures on the pasting behaviors of starches (1997) Cereal Chem., 74 (6), pp. 750-757
van den Berg, C., (1981) Vapour sorption equilibria and other water starch interactions: A physico-chemical approach, , PhD thesis: Agricultural University Wageningen (The Netherlands)
Waigh, T.A., Gidley, M.J., Komanshek, B.U., Donald, A.M., The phase transitions in starch during gelatinization: A liquid crystalline approach (2000) Carbohydr. Res., 328, pp. 165-176
Yost, D.A., Hoseney, R.C., Annealing and glass transition of starch (1986) Starch, 38 (9), pp. 289-292
Zhong, Z., Sun, S., Thermal characterization and phase behavior of cornstarch studied by differential scanning calorimetry (2005) J. Food Eng., 69, pp. 453-459
Zeleznak, K.J., Hoseney, R.C., The glass transition in starch (1987) Cereal Chem., 64 (2), pp. 121-124
Zobel, H.F., Young, S.N., Rocca, L.A., Starch gelatinization: An X-ray diffraction study (1988) Cereal Chem., 65 (6), pp. 443-446