A review of starch swelling behavior: Its mechanism, determination methods, influencing factors, and influence on food quality.
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Lei Dai | Qingjie Sun | Yanfei Wang | Yang Qin | L. Xiong | Ruoyu Jia | N. Ji | Congli Cui | Rui Shi | Lin Gao
[1] N. Noshiranzadeh,et al. Lactic acid esterification of maize starch in solid state: Assistant effect of pullulanase modification on digestibility and physicochemical properties , 2023, Journal of Cereal Science.
[2] Jie Wang,et al. Microwave-assisted enzymatic hydrolysis as a novel efficient way to prepare porous starch. , 2022, Carbohydrate polymers.
[3] A. O. Ashogbon,et al. Starch-based noodles: Current technologies, properties, and challenges. , 2022, Journal of texture studies.
[4] Mohammed Obadi,et al. High-amylose maize starch: Structure, properties, modifications and industrial applications. , 2022, Carbohydrate polymers.
[5] A. Jiao,et al. Structure, physicochemical properties and in vitro digestibility of extruded starch-lauric acid complexes with different amylose contents , 2022, Food Hydrocolloids.
[6] B. S. Yadav,et al. Effect of chemical treatments on the functional, morphological and rheological properties of starch isolated from pigeon pea (Cajanus cajan) , 2022, Current research in food science.
[7] Bin Xu,et al. Exploring the underlying mechanisms on starch restricted swelling-induced reduction in digestion rate of buckwheat noodles. , 2022, Food chemistry.
[8] N. Yang,et al. Application of multistage induced electric field for acid hydrolysis of starch in a continuous-flow reactor. , 2022, International journal of biological macromolecules.
[9] W. Liao,et al. Characterization and in vitro digestion of rice starch/konjac glucomannan complex prepared by screw extrusion and its impact on gut microbiota , 2022, Food Hydrocolloids.
[10] Lei Dai,et al. Recent advances in the preparation, characterization, and food application of starch-based hydrogels. , 2022, Carbohydrate polymers.
[11] Zhenzhen Chen,et al. Effect of annealing using plasma-activated water on the structure and properties of wheat flour , 2022, Frontiers in Nutrition.
[12] F. Shahidi,et al. A novel starch from bitter vetch ( Vicia ervilia ) seeds: A comparison of its physicochemical, structural, thermal, rheological, and pasting properties with conventional starches , 2022, International Journal of Food Science & Technology.
[13] Chang-Qing Ruan,et al. Physicochemical, structural, and digestive properties of pea starch obtained via ultrasonic-assisted alkali extraction , 2022, Ultrasonics sonochemistry.
[14] K. Laddha,et al. Chemical modifications of turmeric starch by Oxidation, Phosphorylation, and Succinylation , 2022, Starch - Stärke.
[15] Cheng Li. Recent progress in understanding starch gelatinization - An important property determining food quality. , 2022, Carbohydrate polymers.
[16] Mohammed Obadi,et al. The relation between wheat starch properties and noodle springiness: From the view of microstructure quantitative analysis of gluten-based network. , 2022, Food chemistry.
[17] Huishan Shen,et al. Effects of ultra-high pressure combined with cold plasma on structural, physicochemical, and digestive properties of proso millet starch. , 2022, International journal of biological macromolecules.
[18] G. Velázquez,et al. Supramolecular structure and technofunctional properties of starch modified by high hydrostatic pressure (HHP): A review. , 2022, Carbohydrate polymers.
[19] Jing Li,et al. Comparison of physicochemical properties and digestibility of sweet potato starch after two modifications of microwave alone and microwave-assisted L-malic acid. , 2022, International journal of biological macromolecules.
[20] I. A. Wani,et al. In-vitro digestibility of rice starch and factors regulating its digestion process: A review. , 2022, Carbohydrate polymers.
[21] Yushan Lei,et al. Modification in structural, physicochemical, functional, and in vitro digestive properties of kiwi starch by high-power ultrasound treatment , 2022, Ultrasonics sonochemistry.
[22] Qiutao Xie,et al. Effects of pullulanase enzymatic hydrolysis on the textural of acorn vermicelli and its influencing mechanism on the quality. , 2022, Food research international.
[23] Huishan Shen,et al. Dielectric barrier discharge plasma improved the fine structure, physicochemical properties and digestibility of α-amylase enzymatic wheat starch , 2022, Innovative Food Science & Emerging Technologies.
[24] Cherakkathodi Sudheesh,et al. Influence of plasma-activated water on the morphological, functional, and digestibility characteristics of hydrothermally modified non-conventional talipot starch , 2022, Food Hydrocolloids.
[25] Limin Li,et al. Heat-moisture modified blue wheat starch: Physicochemical properties modulated by its multi-scale structure. , 2022, Food chemistry.
[26] Y. Ai,et al. Gelation mechanisms of granular and non-granular starches with variations in molecular structures , 2022, Food Hydrocolloids.
[27] M. Sayadi,et al. Effect of freezing-thawing pre-treatment on enzymatic modification of corn and potato starch treated with activated α-amylase: Investigation of functional properties , 2022, Food Hydrocolloids.
[28] Waraporn Sorndech,et al. Physico-chemical properties and digestibility of native and citrate starches change in different ways by synchrotron radiation. , 2022, International journal of biological macromolecules.
[29] B. S. Yadav,et al. Annealing and heat-moisture treatment of amaranth starch: effect on structural, pasting, and rheological properties , 2022, Journal of Food Measurement and Characterization.
[30] K. Nayebzadeh,et al. Effect of Cold Plasma Treatment, Cross‐Linking, and Dual Modification on Corn Starch , 2022, Starch - Stärke.
[31] A. Jayanegara,et al. Annealing processing technique divergently affects starch crystallinity characteristic related to resistant starch content: a literature review and meta‐analysis , 2022, International Journal of Food Science & Technology.
[32] A. A. Septevani,et al. Effect of Catalyst and Cross‐Linker Concentrations on the Functional and Chemical Properties of Sago Starch , 2022, Starch - Stärke.
[33] Md. Hafizur Rahman,et al. An Insight into the Gelatinization Properties Influencing the Modified Starches Used in Food Industry: A review , 2022, Food and Bioprocess Technology.
[34] P. Strappe,et al. Association of starch crystalline pattern with acetylation property and its influence on gut microbota fermentation characteristics , 2022, Food Hydrocolloids.
[35] A. O. Ashogbon,et al. Enzymatic modification of starch: A green approach for starch applications. , 2022, Carbohydrate polymers.
[36] Peter A. Williams,et al. Pectin adsorption onto and penetration into starch granules and the effect on the gelatinization process and rheological properties , 2022, Food Hydrocolloids.
[37] S. Sarbini,et al. Physicochemical properties and the functional food potential of resistant sago (Metroxylon sagu) starch type IV produced by phosphorylation/acetylation treatment , 2022, Journal of Food Measurement and Characterization.
[38] Limin Li,et al. Research progress on properties of pre-gelatinized starch and its application in wheat flour products , 2022, Grain & Oil Science and Technology.
[39] Dongying Jia,et al. Interaction between potato starch and Tremella fuciformis polysaccharide , 2022, Food Hydrocolloids.
[40] W. Prinyawiwatkul,et al. High protein brown rice flour, tapioca starch & potato starch in the development of gluten-free cupcakes , 2021 .
[41] Matthew C. Allan,et al. The effects of sugars and sugar alcohols on the pasting and granular swelling of wheat starch , 2021, Food Hydrocolloids.
[42] S. Mir,et al. Effect of Different Hydrothermal Treatments on Pasting, Textural and Rheological Properties of Single and Dual Modified Corypha Umbraculifera L. Starch , 2021, Starch - Stärke.
[43] Huishan Shen,et al. Pullulanase modification of granular sweet potato starch: Assistant effect of dielectric barrier discharge plasma on multi-scale structure, physicochemical properties. , 2021, Carbohydrate polymers.
[44] Xinzhong Hu,et al. Modified Tartary buckwheat (Fagopyrum tataricum Gaertn.) starch by gaseous ozone: Structural, physicochemical and in vitro digestible properties , 2021, Food Hydrocolloids.
[45] A. Beleia,et al. Characterization of acid-thinned cassava starch and its technological properties in sugar solution , 2021 .
[46] E. Zavareze,et al. Physical modification of starch by heat-moisture treatment and annealing and their applications: A review. , 2021, Carbohydrate polymers.
[47] Shenghua Ding,et al. Effect of ozone and high‐pressure homogenization on the physicochemical, functional, and in vitro digestibility properties of lily starch , 2021, Journal of Food Processing and Preservation.
[48] F. Zhu,et al. Rice starch multi-level structure and functional relationships. , 2021, Carbohydrate polymers.
[49] Yuan Luo,et al. Effects of chitosan modification, cross-linking, and oxidation on the structure, thermal stability, and adsorption properties of porous maize starch , 2021, Food Hydrocolloids.
[50] N. Mazumder,et al. Effects of Hydrothermal Treatments on Physicochemical Properties and In Vitro Digestion of Starch , 2021, Food Biophysics.
[51] Ying Ma,et al. Synergistic effect of hydrothermal and additive treatments on structural and functional characteristics of cassava starch , 2021 .
[52] Narpinder Singh,et al. Effect of High Pressure Treatment on Structural, Functional and In-Vitro Digestibility of Starches from Tubers, Cereals and Beans , 2021 .
[53] Jianpeng Dou,et al. Impact of octenyl succinic anhydride (OSA) esterification on microstructure and physicochemical properties of sorghum starch , 2021 .
[54] S. C. Deka,et al. Effect of dual modification sequence on physicochemical, pasting, rheological and digestibility properties of cassava starch modified by acetic acid and ultrasound. , 2021, International journal of biological macromolecules.
[55] J. Álvarez-Ramírez,et al. Ultrasound‐Assisted Extraction of Lychee ( Litchi chinensis Sonn.) Seed Starch: Physicochemical and Functional Properties , 2021, Starch - Stärke.
[56] Xinzhong Hu,et al. Physicochemical and in vitro digestibility properties on complexes of fermented wheat starches with konjac gum. , 2021, International journal of biological macromolecules.
[57] Wen-Bo Miao,et al. Effect of dry heat modification and the addition of Chinese quince seed gum on the physicochemical properties and structure of tigernut tuber starch , 2021, Arabian Journal of Chemistry.
[58] M. Bolandi,et al. The effects of dual modification on functional, microstructural, and thermal properties of tapioca starch , 2021, Food science & nutrition.
[59] Peng Liu,et al. Physicochemical Properties and In Vitro Digestibility of Dual‐Modified Starch by Cross‐Linking and Annealing , 2021, Starch - Stärke.
[60] Yuan Luo,et al. Effects of α-amylase and glucoamylase on the characterization and function of maize porous starches , 2021, Food Hydrocolloids.
[61] Sushil Dhital,et al. Side-by-side and exo-pitting degradation mechanism revealed from in vitro human fecal fermentation of granular starches. , 2021, Carbohydrate polymers.
[62] Meijuan Xu,et al. Insights into the relations between the molecular structures and physicochemical properties of normal and waxy wheat B‐starch after repeated and continuous annealing , 2021, International Journal of Food Science & Technology.
[63] H. Corke,et al. Removal of starch granule associated proteins alters the physicochemical properties of annealed rice starches. , 2021, International journal of biological macromolecules.
[64] C. M. Veloso,et al. Chemical, Morphological, Thermal and Technological Properties of Acetylated White Inhambu Starch , 2021, Journal of Polymers and the Environment.
[65] F. Zhu,et al. A novel starch from lotus (Nelumbo nucifera) seeds: Composition, structure, properties and modifications , 2021 .
[66] Xia Li,et al. Preparation and characterization of native and autoclaving-cooling treated Pinellia ternate starch and its impact on gut microbiota. , 2021, International journal of biological macromolecules.
[67] F. Fang. Shear-induced synergistic effects of konjac glucomannan and waxy potato starch on viscosity and gel strength , 2021 .
[68] O. Yuliarti,et al. Rheological and microstructural properties of native cassava starch-low methoxyl pectin in a fruit filling gel system , 2021, LWT.
[69] Lihong Han,et al. Modification in physicochemical, structural and digestive properties of pea starch during heat-moisture process assisted by pre- and post-treatment of ultrasound. , 2021, Food chemistry.
[70] Xinquan Wang,et al. Extraction and characterization of starch from Yard-long bean (Vigna unguiculata (L.) Walp. ssp. unguiculata cv.-gr. sesquipedalis). , 2021, International journal of biological macromolecules.
[71] D. Tapia-Blácido,et al. Annealing process improves the physical, functional, thermal, and rheological properties of Andean oca ( Oxalis tuberosa ) starch , 2021 .
[72] S. Prakash,et al. Effect of Annealing on Structural, Physicochemical, and In Vitro Digestive Properties of Starch from Castanopsis sclerophylla , 2021 .
[73] Xinzhong Hu,et al. Isolated Pea Resistant Starch Substrates with Different Structural Features Modulate the Production of Short-Chain Fatty Acids and Metabolism of Microbiota in Anaerobic Fermentation In Vitro. , 2021, Journal of agricultural and food chemistry.
[74] Lijuan Wang,et al. Effects of superheated steam on starch structure and physicochemical properties of buckwheat flour during storage , 2021 .
[75] M. Piecyk,et al. Effects of heat-moisture treatment conditions on the physicochemical properties and digestibility of field bean starch (Vicia faba var. minor). , 2021, International journal of biological macromolecules.
[76] S. Luo,et al. Effects of creeping fig seed polysaccharide on pasting, rheological, textural properties and in vitro digestibility of potato starch , 2021 .
[77] R. Sindhu,et al. Morphology, structure and functionality of acetylated, oxidized and heat moisture treated amaranth starches , 2021 .
[78] W. Qu,et al. Effects of repeated and continuous dry heat treatments on the physicochemical and structural properties of quinoa starch , 2021 .
[79] G. Narsimhan,et al. Prediction of the effect of sucrose on equilibrium swelling of starch suspensions , 2021 .
[80] Jun‐Jie Xing,et al. Influence of protein type, content and polymerization on in vitro starch digestibility of sorghum noodles. , 2021, Food research international.
[81] T. Gebre-Mariam,et al. Isolation and Physico‐chemical Characterization of Triticum Decocum Starch , 2021 .
[82] Dan Xu,et al. Physicochemical, crystalline characterization and digestibility of wheat starch under superheated steam treatment , 2021 .
[83] A. Gadaleta,et al. Impact of durum wheat protein content on spaghetti in vitro starch digestion and technological properties , 2021 .
[84] Xiangzhen Ge,et al. Repeated and continuous dry heat treatments induce changes in physicochemical and digestive properties of mung bean starch , 2021 .
[85] Xiaoxi Li,et al. Basic principles in starch multi-scale structuration to mitigate digestibility: A review , 2021 .
[86] Z. Yang,et al. Effect of sodium bicarbonate on quality of machine-made Kongxin noodles , 2021 .
[87] Zhengyu Jin,et al. Effect of removal of endogenous non-starch components on the structural, physicochemical properties, and in vitro digestibility of highland barley starch , 2021 .
[88] Ke‐Xue Zhu,et al. The addition of alpha amylase improves the quality of Chinese dried noodles. , 2021, Journal of food science.
[89] Aparna Das,et al. Modification of Taro Starch and Starch Nanoparticles by Various Physical Methods and their Characterization , 2021 .
[90] Si-ming Zhao,et al. Starch-protein interplay varies the multi-scale structures of starch undergoing thermal processing. , 2021, International journal of biological macromolecules.
[91] Harjinder Singh,et al. The in vitro digestion of differently structured starch gels with different amylose contents , 2021, Food Hydrocolloids.
[92] Jianjun Cheng,et al. Effects of endogenous proteins and lipids on structural, thermal, rheological, and pasting properties and digestibility of adlay seed (Coix lacryma-jobi L.) starch , 2021 .
[93] Young-Rok Kim,et al. Impact of starch granule-associated channel protein on characteristic of and λ-carrageenan entrapment within wheat starch granules. , 2021, International journal of biological macromolecules.
[94] A. Abbaspourrad,et al. Changes in the Glutinous Rice Grain and Physicochemical Properties of Its Starch upon Moderate Treatment with Pulsed Electric Field , 2021, Foods.
[95] A. Hasnain,et al. Effects of varying levels of succinylation and hydroxypropylation on functional, thermal and textural characteristics of white sorghum starch , 2021 .
[96] A. Hasnain,et al. Combined effects of hydroxypropylation and alcoholic alkaline treatment on structural, functional and rheological characteristics of sorghum and corn starches. , 2021, International journal of biological macromolecules.
[97] Xinzhong Hu,et al. Structural rearrangement of native and processed pea starches following simulated digestion in vitro and fermentation characteristics of their resistant starch residues using human fecal inoculum. , 2021, International journal of biological macromolecules.
[98] Zaixi Shu,et al. Structural and functional characteristics of Japonica rice starches with different amylose contents , 2021, CyTA - Journal of Food.
[99] C. Mahanta,et al. Physicochemical and rheological properties and in vitro digestibility of heat moisture treated and annealed starch of sohphlang (Flemingia vestita) tuber. , 2020, International journal of biological macromolecules.
[100] L. Mao,et al. Physicochemical and structural properties of low-amylose Chinese yam (Dioscorea opposita Thunb.) starches. , 2020, International journal of biological macromolecules.
[101] Yan-wen Wu,et al. Influence of moisture and amylose on the physicochemical properties of rice starch during heat treatment. , 2020, International journal of biological macromolecules.
[102] Guoquan Zhang,et al. The molecular structure, morphology, and physicochemical property and digestibility of potato starch after repeated and continuous heat-moisture treatment. , 2020, Journal of food science.
[103] Jie Xiao,et al. Quantitative study of starch swelling capacity during gelatinization with an efficient automatic segmentation methodology. , 2020, Carbohydrate polymers.
[104] Cheng Li,et al. A molecular explanation of wheat starch physicochemical properties related to noodle eating quality , 2020 .
[105] Xiangzhen Ge,et al. Changes in structural, physicochemical, and digestive properties of normal and waxy wheat starch during repeated and continuous annealing. , 2020, Carbohydrate polymers.
[106] Taihua Mu,et al. Comparative study of the effects of high hydrostatic pressure on physicochemical, thermal, and structural properties of maize, potato, and sweet potato starches , 2020, Journal of Food Processing and Preservation.
[107] A. Blennow,et al. Pre-treatment of granular rice starch to enhance branching enzyme catalysis. , 2020, Carbohydrate polymers.
[108] O. Campanella,et al. Neutral hydrocolloids promote shear-induced elasticity and gel strength of gelatinized waxy potato starch , 2020 .
[109] Peng Liu,et al. Effects of multienzyme treatment on the physicochemical properties of maize starch-lauric acid complex , 2020 .
[110] L. Ran,et al. Analysis of development, accumulation and structural characteristics of starch granule in wheat grain under nitrogen application. , 2020, International journal of biological macromolecules.
[111] P. Menut,et al. Kinetic modelling of individual starch granules swelling , 2020, Food Structure.
[112] Hyun-Seok Kim,et al. Impact of starch granule-associated surface and channel proteins on physicochemical properties of corn and rice starches. , 2020, Carbohydrate polymers.
[113] H. Corke,et al. Gel texture and rheological properties of normal amylose and waxy potato starch blends with rice starches differing in amylose content , 2020, International Journal of Food Science & Technology.
[114] M. Kaur,et al. Impact of ultrasonication on functional and structural properties of Indian wheat (Triticum aestivum L.) cultivar starches. , 2020, International journal of biological macromolecules.
[115] N. Huong,et al. Physicochemical properties and in vitro digestibility of mung-bean starches varying amylose contents under citric acid and hydrothermal treatments. , 2020, International journal of biological macromolecules.
[116] Mario M. Martinez,et al. The effects of starch cross-linking, stabilization and pre-gelatinization at reducing gluten-free bread staling , 2020 .
[117] Hao Jiang,et al. The molecular mechanism for morphological, crystal, physicochemical and digestible property modification of wheat starch after repeated versus continuous heat-moisture treatment , 2020 .
[118] X. Qi,et al. Understanding the molecular weight distribution, in vitro digestibility and rheological properties of the deep-fried wheat starch. , 2020, Food chemistry.
[119] E. Bertoft,et al. Observations on the impact of amylopectin and amylose structure on the swelling of starch granules , 2020 .
[120] Yi Chen,et al. Dual modifications on the gelatinization, textural, and morphology properties of pea starch by sodium carbonate and Mesona chinensis polysaccharide , 2020 .
[121] Yong Xue,et al. Effects of high hydrostatic pressure on swelling behavior of rice starch , 2020 .
[122] L. Copeland,et al. Starch-lipid and starch-lipid-protein complexes: A comprehensive review. , 2020, Comprehensive reviews in food science and food safety.
[123] Hanguo Xiong,et al. Effects of granule size on physicochemical and digestive properties of potato powder. , 2020, Journal of the science of food and agriculture.
[124] Jinfeng Gao,et al. Structural, pasting and thermal properties of common buckwheat (Fagopyrum esculentum Moench) starches affected by molecular structure. , 2020, International journal of biological macromolecules.
[125] H. Corke,et al. Starch granule-associated proteins affect the physicochemical properties of rice starch , 2020 .
[126] Y. Cahyana,et al. The effect of starch-hydrocolloid interaction on starch digestibility, pasting and physicochemical properties: A review , 2020, IOP Conference Series: Earth and Environmental Science.
[127] Limin Li,et al. Comparative studies on physicochemical properties of total, A- and B-type starch from soft and hard wheat varieties. , 2020, International journal of biological macromolecules.
[128] A. D. Semwal,et al. Physical modification of starch: changes in glycemic index, starch fractions, physicochemical and functional properties of heat-moisture treated buckwheat starch , 2020, Journal of food science and technology.
[129] Pham Yen Nhi,et al. Effect of heat-moisture treatment of unpolished red rice on its starch properties and in vitro and in vivo digestibility. , 2020, International journal of biological macromolecules.
[130] Cherakkathodi Sudheesh,et al. Hydrothermal modifications of nonconventional kithul (Caryota urens) starch: physico-chemical, rheological properties and in vitro digestibility , 2020, Journal of food science and technology.
[131] L. Kaur,et al. Dual modification of potato starch: Effects of heat-moisture and high pressure treatments on starch structure and functionalities. , 2020, Food chemistry.
[132] Xinzhong Hu,et al. Insights into the supramolecular structure and techno-functional properties of starch isolated from oat rice kernels subjected to different processing treatments. , 2020, Food chemistry.
[133] A. Blennow,et al. Porous high amylose rice starch modified by amyloglucosidase and maltogenic α-amylase. , 2020, Carbohydrate polymers.
[134] Cherakkathodi Sudheesh,et al. Effect of dual modification with annealing, heat moisture treatment and cross-linking on the physico-chemical, rheological and in vitro digestibility of underutilised kithul (Caryota urens) starch , 2020, Journal of Food Measurement and Characterization.
[135] Guodong Liu,et al. Differences in starch structure, thermal properties, and texture characteristics of rice from main stem and tiller panicles , 2020 .
[136] Sushil Dhital,et al. Texture and digestion of noodles with varied gluten contents and cooking time: The view from protein matrix and inner structure. , 2020, Food chemistry.
[137] Shenghua Ding,et al. Effects of heat-moisture and acid treatments on the structural, physicochemical, and in vitro digestibility properties of lily starch. , 2020, International journal of biological macromolecules.
[138] Hao Jiang,et al. Repeated Heat-Moisture Treatment: a more EffectiveWay for Structural and Physicochemical Modification of Mung Bean Starch Compared with Continuous Way , 2020, Food and Bioprocess Technology.
[139] R. Buckow,et al. Effects of pulsed electric field treatment on the preparation and physicochemical properties of porous corn starch derived from enzymolysis , 2020 .
[140] M. Badshah,et al. Physicochemical properties of enzymatically prepared resistant starch from maize flour and its use in cookies formulation , 2020, International Journal of Food Properties.
[141] B. Sujatha,et al. Physicochemical properties of starch obtained from Curcuma karnatakensis - A new botanical source for high amylose content , 2020, Heliyon.
[142] Zhengyu Jin,et al. Structural properties of rice flour as affected by the addition of pea starch and its effects on textural properties of extruded rice noodles , 2020 .
[143] A. Blennow,et al. Porous rice starch produced by combined ultrasound-assisted ice recrystallization and enzymatic hydrolysis. , 2019, International journal of biological macromolecules.
[144] M. Tanokura,et al. Effects of different modification methods on the physicochemical and rheological properties of Chinese yam (Dioscorea opposita Thunb.) starch , 2019 .
[145] Hongwei Wang,et al. Impact of ultrasonication on the aggregation structure and physicochemical characteristics of sweet potato starch. , 2019, Ultrasonics sonochemistry.
[146] Ling Chen,et al. Study on crystalline, gelatinization and rheological properties of japonica rice flour as affected by starch fine structure. , 2019, International journal of biological macromolecules.
[147] Naifu Wang,et al. Effect of konjac glucomannan with different molecular weights on physicochemical properties of corn starch , 2019, Food Hydrocolloids.
[148] Liding Chen,et al. Insight into the characterization and digestion of lotus seed starch-tea polyphenol complexes prepared under high hydrostatic pressure. , 2019, Food chemistry.
[149] Meijuan Xu,et al. Modification of structural, physicochemical and digestive properties of normal maize starch by thermal treatment. , 2019, Food chemistry.
[150] Pengfei Liu,et al. Effects of amylose content and enzymatic debranching on the properties of maize starch-glycerol monolaurate complexes. , 2019, Carbohydrate polymers.
[151] G. Almeida,et al. Estimation of individual starch granule swelling under hydro-thermal treatment , 2019, Food Structure.
[152] Baris Ozel,et al. Effect of high hydrostatic pressure in physicochemical properties and in vitro digestibility of cornstarch by nuclear magnetic resonance relaxometry , 2019, Journal of Food Process Engineering.
[153] Yun-Fei Fu,et al. Changes in physicochemical and structural properties of tapioca starch after high speed jet degradation , 2019, Food Hydrocolloids.
[154] Xueming Xu,et al. The impact of sodium carbonate on physico-chemical properties and cooking qualities of starches isolated from alkaline yellow noodles. , 2019, International journal of biological macromolecules.
[155] S. Haripriya,et al. Functional and thermal behaviors of heat-moisture treated elephant foot yam starch. , 2019, International journal of biological macromolecules.
[156] Zhengyu Jin,et al. Impact of granule size on microstructural changes and oil absorption of potato starch during frying , 2019, Food Hydrocolloids.
[157] Meijuan Xu,et al. Effect of repeated freezing‐thawing on structural, physicochemical and digestible properties of normal and waxy starch gels , 2019, International Journal of Food Science & Technology.
[158] Bao Zhang,et al. Effects of cross-linking with sodium trimetaphosphate on structural and adsorptive properties of porous wheat starches. , 2019, Food chemistry.
[159] Meijuan Xu,et al. Impact of continuous and repeated dry heating treatments on the physicochemical and structural properties of waxy corn starch. , 2019, International journal of biological macromolecules.
[160] Meijuan Xu,et al. The Comparison of Structural, Physicochemical, and Digestibility Properties of Repeatedly and Continuously Annealed Sweet Potato Starch. , 2019, Journal of food science.
[161] Shi-jie Zhao,et al. Comparison of starch physicochemical properties of wheat cultivars differing in bread- and noodle-making quality , 2019, Food Hydrocolloids.
[162] Hang Liu,et al. The effects of dielectric barrier discharge plasma on physicochemical and digestion properties of starch. , 2019, International journal of biological macromolecules.
[163] F. Zhu,et al. Effect of konjac glucomannan on physicochemical properties of quinoa and maize starches , 2019, Cereal Chemistry.
[164] V. Kaur,et al. Physicochemical, rheological, morphological and in vitro digestibility properties of pearl millet starch modified at varying levels of acetylation. , 2019, International journal of biological macromolecules.
[165] A. Hasnain,et al. Effect of cross-linking on characteristics of succinylated and oxidized barley starch , 2019, Journal of Food Measurement and Characterization.
[166] M. Baik,et al. Physicochemical and retrogradation properties of modified chestnut starches , 2019, Food Science and Biotechnology.
[167] Jiajia Huang,et al. Physicochemical properties of hydroxypropylated and cross-linked rice starches differential in amylose content. , 2019, International journal of biological macromolecules.
[168] Peilei Zhu,et al. Effects of konjac glucomannan on pasting and rheological properties of corn starch , 2019, Food Hydrocolloids.
[169] Hadis Rostamabadi,et al. Preparation of physically modified oat starch with different sonication treatments , 2019, Food Hydrocolloids.
[170] H. Kaur,et al. Effect of high-intensity ultrasound treatment on nutritional, rheological and structural properties of starches obtained from different cereals. , 2019, International journal of biological macromolecules.
[171] Yun Chen,et al. Effects of dry heat treatment on the structure and physicochemical properties of waxy potato starch. , 2019, International journal of biological macromolecules.
[172] B. S. Khatkar,et al. Physicochemical, thermal and structural properties of heat moisture treated common buckwheat starches , 2019, Journal of Food Science and Technology.
[173] Cherakkathodi Sudheesh,et al. Kithul palm (Caryota urens) as a new source of starch: Effect of single, dual chemical modifications and annealing on the physicochemical properties and in vitro digestibility. , 2019, International journal of biological macromolecules.
[174] Wenyuan Gao,et al. Complex formation, physicochemical properties of different concentration of palmitic acid yam (Dioscorea pposita Thunb.) starch preparation mixtures , 2019, LWT.
[175] Qiaoquan Liu,et al. Effects of molecular compositions on crystalline structure and functional properties of rice starches with different amylopectin extra-long chains , 2019, Food Hydrocolloids.
[176] Pengfei Liu,et al. Effects of glycerides with different molecular structures on the properties of maize starch and its film forming capacity , 2019, Industrial Crops and Products.
[177] N. Sit,et al. Effect of single and dual steps annealing in combination with hydroxypropylation on physicochemical, functional and rheological properties of barley starch. , 2019, International journal of biological macromolecules.
[178] Narpinder Singh,et al. Hard, medium-hard and extraordinarily soft wheat varieties: Comparison and relationship between various starch properties. , 2019, International journal of biological macromolecules.
[179] Hao Jiang,et al. Effects of repeated and continuous dry heat treatments on properties of sweet potato starch. , 2019, International journal of biological macromolecules.
[180] Sukriti Singh,et al. Influence of heat-moisture treatment (HMT) on physicochemical and functional properties of starches from different Indian oat (Avena sativa L.) cultivars. , 2019, International journal of biological macromolecules.
[181] Hongliang Zeng,et al. Effect of guar gum on the physicochemical properties and in vitro digestibility of lotus seed starch. , 2019, Food chemistry.
[182] Meijuan Xu,et al. Structural and physicochemical properties of mung bean starch as affected by repeated and continuous annealing and their in vitro digestibility , 2019, International Journal of Food Properties.
[183] M. Kapelko-Żeberska,et al. Effect of the Botanical Origin on Properties of RS3/4 Type Resistant Starch , 2019, Polymers.
[184] S. Amiri,et al. Evaluating the function of cross‐linked rice starch as a fat replacer in low fat cream , 2018 .
[185] S. Razavi,et al. Dynamic rheological and textural properties of acorn (Quercus brantii Lindle.) starch: Effect of single and dual hydrothermal modifications , 2018 .
[186] Zhengxing Chen,et al. Effect of annealing on the physico-chemical properties of rice starch and the quality of rice noodles , 2018, Journal of Cereal Science.
[187] J. Ahmed,et al. Rheological, structural and functional properties of high-pressure treated quinoa starch in dispersions. , 2018, Carbohydrate polymers.
[188] Lei Yu,et al. Effects of the combination of freeze-thawing and enzymatic hydrolysis on the microstructure and physicochemical properties of porous corn starch , 2018, Food Hydrocolloids.
[189] Haiqing Zhang,et al. Effects of potassium fertilization on potato starch physicochemical properties. , 2018, International journal of biological macromolecules.
[190] Meijuan Xu,et al. The Changes in Structural, Physicochemical, and Digestive Properties of Red Adzuki Bean Starch after Repeated and Continuous Annealing Treatments , 2018 .
[191] Meijuan Xu,et al. The effect of repeated versus continuous annealing on structural, physicochemical, and digestive properties of potato starch. , 2018, Food research international.
[192] Takahisa Nishizu,et al. Effects of Dual Modification with Succinylation and Annealing on Physicochemical, Thermal and Morphological Properties of Corn Starch , 2018, Foods.
[193] Zhengjie Fu,et al. Developments in Hydroxypropylation of Starch: A Review , 2018, Starch - Stärke.
[194] Han-Qing Chen,et al. Evaluation studies on the combined effect of hydrothermal treatment and octenyl succinylation on the physic-chemical, structural and digestibility characteristics of sweet potato starch. , 2018, Food chemistry.
[195] Hao Jiang,et al. The Modifications in Physicochemical and Functional Properties of Proso Millet Starch after Ultra‐High Pressure (UHP) Process , 2018 .
[196] F. Zhu. Modifications of starch by electric field based techniques , 2018 .
[197] S. Razavi,et al. Impact of hydrothermal modifications on the physicochemical, morphology, crystallinity, pasting and thermal properties of acorn starch. , 2018, Food chemistry.
[198] D. Mcclements,et al. Effect of endogenous proteins and lipids on starch digestibility in rice flour. , 2018, Food research international.
[199] O. Campanella,et al. A mechanistic model for swelling kinetics of waxy maize starch suspension , 2018 .
[200] Meijuan Xu,et al. Microwave pretreated esterification improved the substitution degree, structural and physicochemical properties of potato starch esters , 2018 .
[201] F. Zhu,et al. Effect of high pressure on rheological and thermal properties of quinoa and maize starches. , 2018, Food chemistry.
[202] Sushil Dhital,et al. Effects of palm oil on structural and in vitro digestion properties of cooked rice starches. , 2018, International journal of biological macromolecules.
[203] I. Oey,et al. Feasibility of using pulsed electric fields to modify biomacromolecules: A review , 2018 .
[204] Ji Yeon Kim,et al. Effect of dual modification of HMT and crosslinking on physicochemical properties and digestibility of waxy maize starch , 2018 .
[205] Wei He,et al. Progress in C-type starches from different plant sources. , 2017 .
[206] Baojun Xu,et al. Morphology, crystallinity, pasting, thermal and quality characteristics of starches from adzuki bean (Vigna angularis L.) and edible kudzu (Pueraria thomsonii Benth). , 2017, International journal of biological macromolecules.
[207] Meijuan Xu,et al. Repeated heat-moisture treatment exhibits superiorities in modification of structural, physicochemical and digestibility properties of red adzuki bean starch compared to continuous heat-moisture way. , 2017, Food research international.
[208] S. Yanniotis,et al. The effect of salt concentration on swelling power, rheological properties and saltiness perception of waxy, normal and high amylose maize starch. , 2017, Food & function.
[209] L. Matia-Merino,et al. Understanding the interaction between wheat starch and Mesona chinensis polysaccharide , 2017 .
[210] Yimin Wei,et al. Multilevel Structure of Wheat Starch and Its Relationship to Noodle Eating Qualities. , 2017, Comprehensive reviews in food science and food safety.
[211] Wenyuan Gao,et al. Effect of blanching and drying temperatures on starch-related physicochemical properties, bioactive components and antioxidant activities of yam flours , 2017 .
[212] R. Hoover,et al. Plant proteins mitigate in vitro wheat starch digestibility , 2017 .
[213] F. Zhu,et al. Amylopectin molecular structure in relation to physicochemical properties of quinoa starch. , 2017, Carbohydrate polymers.
[214] Xiaoxu Fan,et al. Effects of surface proteins and lipids on molecular structure, thermal properties, and enzymatic hydrolysis of rice starch , 2017 .
[215] F. Plou,et al. Effect of High Hydrostatic Pressure, alkaline and combined treatments on corn starch granules metal binding: Structure, swelling behavior and thermal properties assessment , 2017 .
[216] L. Copeland,et al. Insights into the Formation and Structures of Starch-Protein-Lipid Complexes. , 2017, Journal of agricultural and food chemistry.
[217] R. Yada,et al. Physicochemical properties and in vitro starch digestibility of potato starch/protein blends. , 2016, Carbohydrate polymers.
[218] N. Sit,et al. Dual modification of taro starch by microwave and other heat moisture treatments. , 2016, International journal of biological macromolecules.
[219] Hang Liu,et al. Physicochemical properties and in vitro digestibility of sorghum starch altered by high hydrostatic pressure. , 2016, International journal of biological macromolecules.
[220] Guoquan Zhang,et al. Physicochemical and structural properties of A- and B-starch isolated from normal and waxy wheat: Effects of lipids removal , 2016 .
[221] Zhengxing Chen,et al. Studies on Quality of Potato Flour Blends with Rice Flour for Making Extruded Noodles , 2016 .
[222] Jose Alvarez-Ramirez,et al. Effect of ultrasonic treatment on the morphological, physicochemical, functional, and rheological properties of starches with different granule size , 2016 .
[223] J. Álvarez-Ramírez,et al. Effect of cross‐linking on the physicochemical, functional and digestibility properties of starch from Macho (Musa paradisiaca L.) and Roatan (Musa sapientum L.) banana varieties , 2016 .
[224] O. Awolu,et al. Physico‐chemical, functional and pasting properties of native and chemically modified water yam (Dioscorea alata) starch and production of water yam starch‐based yoghurt , 2016 .
[225] Lijing Wang,et al. In vitro digestibility and changes in physicochemical and structural properties of common buckwheat starch affected by high hydrostatic pressure. , 2016, Carbohydrate polymers.
[226] Hao Jiang,et al. Effects of removal of surface proteins on physicochemical and structural properties of A- and B-starch isolated from normal and waxy wheat , 2016, Journal of Food Science and Technology.
[227] D. C. Saxena,et al. Effect of heat-moisture and acid treatment on physicochemical, pasting, thermal and morphological properties of Horse Chestnut (Aesculus indica) starch , 2016 .
[228] C. Rosell,et al. Physico-chemical properties of corn starch modified with cyclodextrin glycosyltransferase. , 2016, International journal of biological macromolecules.
[229] J. H. Han,et al. Effects of pH and Salts on Physical and Mechanical Properties of Pea Starch Films. , 2016, Journal of food science.
[230] Narpinder Singh,et al. Physicochemical and rheological properties of starch and flour from different durum wheat varieties and their relationships with noodle quality , 2016, Journal of Food Science and Technology.
[231] N. Sit,et al. Effect of dual modification with hydroxypropylation and cross-linking on physicochemical properties of taro starch. , 2016, Carbohydrate polymers.
[232] S. Sukhija,et al. Effect of oxidation, cross-linking and dual modification on physicochemical, crystallinity, morphological, pasting and thermal characteristics of elephant foot yam (Amorphophallus paeoniifolius) starch , 2016 .
[233] F. Zhou,et al. Potato starch oxidation induced by sodium hypochlorite and its effect on functional properties and digestibility. , 2016, International journal of biological macromolecules.
[234] Zhengyu Jin,et al. Effect of repeated heat-moisture treatments on digestibility, physicochemical and structural properties of sweet potato starch , 2016 .
[235] Guoquan Zhang,et al. Recrystallization characteristics of high hydrostatic pressure gelatinized normal and waxy corn starch. , 2016, International journal of biological macromolecules.
[236] Zhifeng Wang,et al. Effect of granule size on the properties of lotus rhizome C-type starch. , 2015, Carbohydrate polymers.
[237] Michael A. Odeniyi,et al. Material and rheological properties of native, acetylated, and pregelatinized forms of corn, cassava, and sweet potato starches , 2015 .
[238] N. L. Vanier,et al. Effects of single and dual physical modifications on pinhão starch. , 2015, Food chemistry.
[239] Zhengyu Jin,et al. Effects of granule size of cross-linked and hydroxypropylated sweet potato starches on their physicochemical properties. , 2015, Journal of agricultural and food chemistry.
[240] E. Zavareze,et al. Structure, morphology and functionality of acetylated and oxidised barley starches. , 2015, Food chemistry.
[241] Lijun Yin,et al. Effects of corn fiber gum (CFG) on the pasting and thermal behaviors of maize starch. , 2015, Carbohydrate polymers.
[242] Qiang Huang,et al. Effect of lauric acid on the V-amylose complex distribution and properties of swelled normal cornstarch granules , 2013 .
[243] L. Day,et al. Effect of NaCl on the thermal behaviour of wheat starch in excess and limited water. , 2013, Carbohydrate polymers.
[244] B. Adhikari,et al. Physicochemical and functional characteristics of lentil starch. , 2013, Carbohydrate polymers.
[245] M. Suphantharika,et al. Effect of salts on pasting, thermal, and rheological properties of rice starch in the presence of non-ionic and ionic hydrocolloids , 2012 .
[246] A. Karim,et al. Effects of sodium dodecyl sulphate and sonication treatment on physicochemical properties of starch , 2010 .
[247] R. Hoover,et al. Effect of single and dual hydrothermal treatments on the crystalline structure, thermal properties, and nutritional fractions of pea, lentil, and navy bean starches , 2010 .
[248] K. Dewettinck,et al. Influence of electrolytes on the heat-induced swelling of aqueous dispersions of native wheat starch granules , 2009 .
[249] M. Gidley,et al. Three classes of starch granule swelling: Influence of surface proteins and lipids , 2006 .
[250] B. Yoo,et al. Rheology of rice starch-sucrose composites , 2005 .
[251] J. Jane,et al. Characterization of Nubet and Franubet barley starches , 2004 .
[252] L. Kaur,et al. Morphological, thermal and rheological properties of starches from different botanical sources , 2003 .
[253] N. Zaritzky,et al. Modelling of rheological behaviour in starch-lipid systems , 1996 .
[254] Hongwei Wang,et al. Causal relations among starch hierarchical structure and physicochemical characteristics after repeated freezing-thawing , 2022 .
[255] Zhan‐qian Ma,et al. Effects of fermentation on the structure and physical properties of glutinous proso millet starch , 2022 .
[256] H. Joyner,et al. Development of starch texture rheological maps through empirical modeling of starch swelling behavior , 2021 .
[257] Huishan Shen,et al. The influence of repeated versus continuous dry-heating on the performance of wheat starch with different amylose content , 2021 .
[258] Shaoyun Wang,et al. Effect of Amorphization Methods on the Properties and Structures of Potato Starch‐Monoglyceride Complex , 2019, Starch - Stärke.
[259] Ljubica Dokić,et al. Functionality of Starch Derivatives in Bakery and Confectionery Products , 2018 .
[260] A. Bartoszek,et al. The impact of cooking method on the phenolic composition, total antioxidant activity and starch digestibility of rice (Oryza sativa L.) , 2018 .
[261] Wang Liping,et al. Physicochemical properties, structural properties, and in vitro digestibility of pea starch treated with high hydrostatic pressure , 2018 .
[262] Narpinder Singh,et al. Wheat starch production, structure, functionality and applications—a review , 2017 .
[263] Yong‐Cheng Shi,et al. Structure and pasting properties of alkaline-treated phosphorylated cross-linked waxy maize starches. , 2017, Food chemistry.
[264] Jinglin Yu,et al. Effect of fatty acids on functional properties of normal wheat and waxy wheat starches: A structural basis. , 2016, Food chemistry.
[265] Chaoyang Ma,et al. Preparation, physicochemical characterization and application of acetylated lotus rhizome starches. , 2016, Carbohydrate polymers.
[266] F. Aramouni,et al. Effect of heat treatment of sorghum flour on the functional properties of gluten-free bread and cake , 2016 .
[267] Baodong Zheng,et al. Structural and physicochemical properties of lotus seed starch treated with ultra-high pressure. , 2015, Food chemistry.
[268] T. Warkentin,et al. Physicochemical properties of starches from various pea and lentil varieties, and characteristics of their noodles prepared by high temperature extrusion , 2014 .
[269] N. Georgiadis,et al. Effect of fatty acids on the rheological behaviour of amylomaize starch dispersions during heating , 2008 .