A. Juteau, J. L. Doublier, and E. Guichard, Flavor release from ?-carrageenan matrices: a kinetic approach, J. Agric. Food Chem, vol.52, pp.1621-1629, 2004.

R. Yegappan, V. Selvaprithiviraj, S. Amirthalingam, and R. Jayakumar, Carrageenan based hydrogels for drug delivery, tissue engineering and wound healing, Carbohydr. Polym, vol.198, pp.385-400, 2018.

S. H. Knutsen, D. E. Myslabodski, B. Larsen, and A. I. Usov, Modified System of Nomenclature for Red Algal Galactans, vol.37, pp.163-169, 1994.

A. Trius and J. G. Sebranek, Carrageenans and Their Use in Meat Products, Crit. Rev. Food Sci. Nutr, vol.36, pp.69-85, 1996.

C. Rochas and M. Rinaudo, Activity Coefficients of Counterions and Conformation in Kappa-Carrageenna System, Biopolymers, vol.19, pp.1675-1687, 1980.

Y. Yuguchi, T. T. Thu-thuy, H. Urakawa, and K. Kajiwara, Structural characteristics of carrageenan gels: Temperature and concentration dependence, Food Hydrocolloids, vol.16, pp.515-522, 2002.

L. Piculell, S. Nilsson, and P. Muhrbeck, Effects of small amounts of kappa-carrageenan on the rheology of aqueous iota-carrageenan, Carbohydr. Polym, vol.18, pp.199-208, 1992.

L. Picullel, C. Håkansson, and S. Nilsson, Cation specificity of the order-disorder transition in iota carrageenan: effects of kappa carrageenan impurities, Int. J. Biol. Macromol, vol.9, pp.297-301, 1987.

L. Lundin, K. Odic, T. J. Foster, and I. T. Norton, Phase separation in mixed carrageenan systems, Supermolecular and colloidal structures in Biomaterials and Biosubstrates, pp.436-449, 2000.

A. Parker, G. Brigand, C. Miniou, A. Trespoey, and P. Vallée, Rheology and fracture of mixed ?-and ?-carrageenan gels: Two-step gelation, Carbohydr. Polym, vol.20, pp.253-262, 1993.

L. Du, T. Brenner, J. Xie, and S. Matsukawa, A study on phase separation behavior in kappa/iota carrageenan mixtures by micro DSC, rheological measurements and simulating water and cations migration between phases, Food Hydrocoll, vol.55, pp.81-88, 2016.

T. Brenner, R. Tuvikene, A. Parker, S. Matsukawa, and K. Nishinari, Rheology and structure of mixed kappa-carrageenan/iota-carrageenan gels. Food Hydrocoll, vol.39, pp.272-279, 2014.

C. Rochas, M. Rinaudo, and S. Landry, Relation between the molecular structure and mechanical properties of carrageenan gels, Carbohydr. Polym, vol.10, pp.115-127, 1989.
URL : https://hal.archives-ouvertes.fr/hal-00310094

H. J. Bixler and H. Porse, A decade of change in the seaweed hydrocolloids industry, J. Appl. Phycol, vol.23, pp.321-335, 2011.

. Fao, The State of World Fisheries and Aquaculture. Contributing to food security and nutrition for all, pp.92-97, 2016.

, FAO. The State of World Fisheries and Aquaculture. Meeting the sustainable development goals, 2018.

L. D. Hung, K. Hori, H. Q. Nang, T. Kha, and L. T. Hoa, Seasonal changes in growth rate, carrageenan yield and lectin content in the red alga Kappaphycus alvarezii cultivated in Camranh Bay, J. Appl. Phycol, vol.21, pp.265-272, 2009.

R. I. Montolalu, Y. Tashiro, S. Matsukawa, and H. Ogawa, Effects of extraction parameters on gel properties of carrageenan from Kappaphycus alvarezii (Rhodophyta)

, J. Appl. Phycol, vol.20, pp.521-526, 2008.

A. Heilig, A. Göggerle, and J. Hinrichs, Multiphase visualisation of fatcontaining ?-lactoglobulin-?-carrageenan gels by confocal scanning laser microscopy, using a novel dye, V03-01136, for fat staining, LWT -Food Sci. Technol, vol.42, pp.646-653, 2009.

B. J. Berne and R. Pecora, Dynamic Light Scattering. Br, Polym. J, vol.177, 1976.

F. Van-de-velde, L. Pereira, and H. S. Rollema, The revised NMR chemical shift data of carrageenans, Carbohydr. Res, vol.339, pp.2309-2313, 2004.

E. Tojo and J. Prado, A simple 1 H NMR method for the quantification of carrageenans in blends, Carbohydr. Poly, vol.53, pp.325-329, 2003.

L. Noël, M. Carl, C. Vastel, and T. Guérin, Determination of sodium, potassium, calcium and magnesium content in milk products by flame atomic absorption spectrometry (FAAS): A joint ISO/IDF collaborative study, Int. Dairy J, vol.18, pp.899-904, 2008.

K. Ako, D. Durand, T. Nicolai, and L. Becu, Quantitative analysis of confocal laser scanning microscopy images of heat-set globular protein gels. Food Hydrocoll, vol.23, pp.1111-1119, 2009.

N. Lorén, Fluorescence recovery after photobleaching in material and life sciences : putting theory into practice, Q. Rev. Biophys, vol.3, pp.323-387, 2015.

C. Klein and F. Waharte, Analysis of molecular mobility by fluorescence recovery after photobleaching in living cells, Microscopy: Science, Technology, Applications and Education, pp.772-783, 2010.

J. K. Jonasson, N. Lorén, P. Olofsson, M. Nydén, and M. Rudemo, A pixel-based References

V. Webber, S. M. Carvalho, . De, P. J. Ogliari, L. Hayashi et al., Optimization of the extraction of carrageenan from Kappaphycus alvarezii using response surface methodology, Food Sci. Technol, vol.32, pp.812-818, 2012.

J. M. Estevez, M. Ciancia, and A. S. Cerezo, The system of low-molecular-weight carrageenans and agaroids from the room-temperature-extracted fraction of Kappaphycus alvarezii, Carbohydr. Res, vol.325, pp.287-299, 2000.

F. Van-de-velde and H. S. Rollema, High Resolution NMR of Carrageenans, Modern Magnetic Resonance, pp.1605-1610, 2008.

F. Van-de-velde, S. H. Knutsen, and A. Usov,

, C high resolution NMR spectroscopy of carrageenans: application in research and industry, Trends Food Sci. Technol, vol.13, pp.73-92, 2002.

M. Dennis and J. , FAO Fisheries Technical Paper 441. A guide to the seaweed industry, 2003.

E. Vázquez-delfín and &. D. Robledo-&-y.-freile-pelegrín, Microwave-assisted extraction of the carrageenan from Hypnea musciformis (Cystocloniaceae, Rhodophyta ), J. Appl. Phycol, vol.26, pp.901-907, 2013.

A. Vanina, D. A. Cosenzaa, E. N. Navarroa, A. M. Fissoreb, and C. A. Rojasb, Chemical and rheological characterization of the carrageenans from Hypnea musciformis (Wulfen) Lamoroux, Carbohydr. Polym, vol.102, pp.780-789, 2014.

L. Piculell, S. Nilsson, and P. Muhrbeck, Effects of small amounts of kappa-carrageenan on the rheology of aqueous iota-carrageenan, Carbohydr. Polym, vol.18, pp.199-208, 1992.

J. Collén, Chondrus crispus -A present and historical model organism for red seaweeds, In Advances in Botanical Research, vol.71, pp.53-89, 2014.

R. Falshaw and R. H. Furneaux, Carrageenans from the tetrasporic stages of Gigartina clavifera and Gigartina alveata, Carbohydr. Res, vol.276, pp.155-165, 1995.

R. Falshaw and R. H. Furneaux, Carrageenan from the tetrasporic stage of Gigartina decipiens ( Gigartinaceae , Rhodophyta ), Carbohydr. Res, vol.252, pp.171-182, 1994.

A. Bono, S. M. Anisuzzaman, and O. W. Ding, Effect of process conditions on the gel viscosity and gel strength of semi-refined carrageenan (SRC) produced from seaweed (Kappaphycus alvarezii), J. King Saud Univ. -Eng. Sci, vol.26, pp.3-9, 2014.

P. T. Chan and P. Matanjun, Chemical composition and physicochemical properties of tropical red seaweed, Gracilaria changii, Food Chem, vol.221, pp.302-310, 2017.

J. Moses, R. Anandhakumar, and M. Shanmugam, Effect of alkaline treatment on the sulfate content and quality of semi-refined carrageenan prepared from seaweed Kappaphycus alvarezii Doty (Doty) farmed in Indian waters, African J. Biotechnol, vol.14, pp.1584-1589, 2015.

A. Karlsson and S. K. Singh, Acid hydrolysis of sulphated polysaccharides. Desulphation and the effect on molecular mass, Carbohydr. Polym, vol.38, pp.7-15, 1999.

L. D. Hung, K. Hori, H. Q. Nang, T. Kha, and L. T. Hoa, Seasonal changes in growth rate, carrageenan yield and lectin content in the red alga Kappaphycus alvarezii cultivated in Camranh Bay, J. Appl. Phycol, vol.21, pp.265-272, 2009.

L. Hayashi, The effects of selected cultivation conditions on the carrageenan characteristics of Kappaphycus alvarezii (Rhodophyta, Solieriaceae, J. Appl. Phycol, vol.19, pp.505-511, 2007.

L. Hilliou, The impact of seaweed life phase and postharvest storage duration on the chemical and rheological properties of hybrid carrageenans isolated from

, Portuguese Mastocarpus stellatus. Carbohydr. Polym, vol.87, pp.2655-2663, 2012.

N. Rhein-knudsen, M. T. Ale, F. Ajalloueian, L. Yu, and A. S. Meyer, Rheological properties of agar and carrageenan from Ghanaian red seaweeds. Food Hydrocoll, vol.63, pp.50-58, 2017.

R. A. Hoffmann, M. J. Gidley, D. Cooke, and W. J. Frith, Effect of isolation procedures on the molecular composition and physical properties of Eucheuma cottonii carrageenan, Top. Catal, vol.9, pp.281-289, 1995.

M. Ohno, H. Q. Nang, and S. Hirase, Cultivation and carrageenan yield and quality of Kappaphycus alvarezii in the waters of Vietnam, J. of Applied Phycol, vol.8, pp.431-437, 1996.

C. Rochas and M. Rinaudo, Activity coefficients of counterions and conformation in kappa-carrageenna system, Biopolymers, vol.19, pp.1675-1687, 1980.

I. T. Norton, D. M. Goodall, E. R. Morris, and D. A. Rees, Role of cations in the conformation of iota and kappa carrageenan, J. Chem. Soc. Faraday Trans. 1, vol.79, pp.2475-2488, 1983.

C. Rochas, M. Rinaudo, and S. Landry, Relation between the molecular structure and mechanical properties of carrageenan gels, Carbohydr. Polym, vol.10, pp.115-127, 1989.
URL : https://hal.archives-ouvertes.fr/hal-00310094

A. S. Michel, M. M. Mestdagh, and M. A. Axelos, Physico-chemical properties of carrageenan gels in presence of various cations, International Journal of Biological Macromolecules, vol.21, pp.195-200, 1997.

P. Macartain, J. C. Jacquier, and K. A. Dawson, Physical characteristics of calcium induced ?-carrageenan networks, Carbohydr. Polym, vol.53, pp.395-400, 2003.

T. R. Thrimawithana, S. Young, D. E. Dunstan, and R. G. Alany, Texture and rheological characterization of kappa and iota carrageenan in the presence of counter ions, Carbohydr. Polym, vol.82, pp.69-77, 2010.

B. T. Nguyen, T. Nicolai, L. Benyahia, and C. Chassenieux, Synergistic effects of mixed salt on the gelation of ?-carrageenan, Carbohydr. Polym, vol.112, pp.10-15, 2014.

M. Robal, Monocationic salts of carrageenans: Preparation and physico-chemical properties. Food Hydrocoll, vol.63, pp.656-667, 2017.

A. Parker, G. Brigand, C. Miniou, A. Trespoey, and P. Vallée, Rheology and fracture of mixed ?-and ?-carrageenan gels: Two-step gelation, Carbohydr. Polym, vol.20, pp.253-262, 1993.

L. Lundin, K. Odic, T. J. Foster, and I. T. Norton, Phase separation in mixed carrageenan systems, Supermolecular and colloidal structures in Biomaterials and Biosubstrates, pp.436-449, 2000.

T. Brenner, R. Tuvikene, A. Parker, S. Matsukawa, and K. Nishinari, Rheology and structure of mixed kappa-carrageenan/iota-carrageenan gels, Food Hydrocoll, vol.39, p.272

L. Du, T. Brenner, J. Xie, and S. Matsukawa, A study on phase separation behavior in kappa/iota carrageenan mixtures by micro DSC, rheological measurements and simulating water and cations migration between phases, Food Hydrocoll, vol.55, pp.81-88, 2016.

V. M. Lai, P. A. Wong, and C. Y. Lii, Effects of cation properties on sol-gel transition and gel properties of ?-carrageenan, J. Food Sci, vol.65, pp.1332-1337, 2000.

K. Ako, Influence of elasticity on the syneresis properties of ?-carrageenan gels, Carbohydr. Polym, vol.115, pp.408-414, 2015.

T. R. Mikkelsen, A. Scottsdale, and R. F. Theiler, Water-based gel with low syneresis field. United States Patent, pp.157922-157923, 2013.

R. Yegappan, V. Selvaprithiviraj, S. Amirthalingam, and R. Jayakumar, Carrageenan based hydrogels for drug delivery, tissue engineering and wound healing, Carbohydr. Polym, vol.198, pp.385-400, 2018.

A. Juteau, J. Doublier, and E. Guichard, Flavor release from iota-carrageenan matrices: a kinetic approach, J. Agric. Food Chem, vol.52, pp.1621-1629, 2004.

D. W. De-kort, Heterogeneity of network structures and water dynamics in ?-carrageenan gels probed by nanoparticle diffusometry, Langmuir, vol.34, pp.11110-11120, 2018.

J. Hagman, N. Lorén, and A. M. Hermansson, Probe diffusion in ?-carrageenan gels determined by fluorescence recovery after photobleaching. Food Hydrocoll, vol.29, pp.106-115, 2012.

N. Lorén, Dendrimer diffusion in ?-carrageenan gel structures, Biomacromolecules, vol.10, pp.275-284, 2009.

B. Walther, N. Lorén, M. Nydén, and A. M. Hermansson, Influence of ?-carrageenan gel structures on the diffusion of probe molecules determined by transmission electron microscopy and NMR diffusometry, Langmuir, vol.22, pp.8221-8228, 2006.

Q. Zhao, T. Brenner, and S. Matsukawa, Molecular mobility and microscopic structure changes in ?-carrageenan solutions studied by gradient NMR, Carbohydr. Polym, vol.95, pp.458-464, 2013.

D. M. Soumpasis, Brief communication theoretical analysis of fluorescence photobleaching recovery experiments, Biophys. J, vol.41, pp.95-97, 1983.

T. Brenner, R. Tuvikene, Y. Fang, and S. Matsukawa, Rheology of highly elastic iotacarrageenan/kappa-carrageenan /xanthan/konjac glucomannan gels. Food Hydrocoll, vol.44, pp.136-144, 2015.

L. Du, T. Brenner, J. Xie, and S. Matsukawa, A study on phase separation behavior in kappa/iota carrageenan mixtures by micro DSC, rheological measurements and simulating water and cations migration between phases, Food Hydrocoll, vol.55, pp.81-88, 2016.

L. Lundin, K. Odic, T. J. Foster, and I. T. Norton, Phase separation in mixed carrageenan systems, Supermolecular and colloidal structures in Biomaterials and Biosubstrates, pp.436-449, 2000.

M. J. Ridout, S. Garza, G. J. Brownsey, and V. J. Morris, Mixed iota-kappa carrageenan gels, Int. J. Biol. Macromol, vol.18, pp.5-8, 1996.