dc.contributor.advisor | Cáez Ramírez, Gabriela | |
dc.contributor.advisor | Sotelo, Indira | |
dc.contributor.author | Torres Ortiz, Katherine Sofia | |
dc.date.accessioned | 2024-06-11T16:44:53Z | |
dc.date.available | 2024-06-11T16:44:53Z | |
dc.date.issued | 2023-04-25 | |
dc.identifier.uri | http://hdl.handle.net/10818/60377 | |
dc.description | 107 páginas | es_CO |
dc.description.abstract | Older adults, particularly those with neurodegenerative diseases such as Alzheimer's, have difficulties associated with reduced sensory capacity and physiological impairment of swallowing, which reduce food intake, contributing to malnutrition. Nutritional deficiencies due to limited consumption of micro and macronutrients affect both homecare and institutionalized older adults. For this reason, looking for alternatives that lead to the health and well-being of this population at risk was essential. This research proposed to design foods from mixtures with a specific structure and composition for feeding older adults with Alzheimer's disease through 3D printing. The experimental phase was developed in three stages: (1) systematic literature review for the selection of patterns; (2) characterization of patterns in rheological and mechanical-acoustic (TPA-Audio) parameters, in terms of structure, for solid, semi-solid, and liquid matrices considering the degree of theoretical severity of swallowing limitation | en |
dc.format | application/pdf | es_CO |
dc.language.iso | spa | es_CO |
dc.publisher | Universidad de La Sabana | es_CO |
dc.rights | Attribution-NonCommercial-NoDerivatives 4.0 Internacional | * |
dc.rights.uri | http://creativecommons.org/licenses/by-nc-nd/4.0/ | * |
dc.subject.other | Alzheimer | |
dc.subject.other | Impresión 3D | |
dc.subject.other | Requerimientos nutricionales | |
dc.title | Diseño de alimentos con texturas específicas para adulto mayor con alzheimer a través de impresión 3D | es_CO |
dc.type | master thesis | es_CO |
dc.type.hasVersion | publishedVersion | es_CO |
dc.rights.accessRights | restrictedAccess | es_CO |
dcterms.references | Aguayo-Mendoza, M. G., Ketel, E. C., van der Linden, E., Forde, C. G., Piqueras-Fiszman, B., &
Stieger, M. (2019). Oral processing behavior of drinkable, spoonable and chewable foods is primarily
determined by rheological and mechanical food properties. Food Quality and Preference, 71, 87-95.
https://doi.org/10.1016/j.foodqual.2018.06.006 | |
dcterms.references | Aguilera, J. M., & Park, D. J. (2016). Texture-modified foods for the elderly: Status, technology and
opportunities. Trends in Food Science & Technology, 57, 156-164. | |
dcterms.references | Ahmed, S., Zhou, X., Pang, Y., Xu, Y., Tong, C., & Bao, J. (2018). Genetic diversity of potato
genotypes estimated by starch physicochemical properties and microsatellite markers. Food chemistry, 257,
368-375. https://doi.org/10.1016/j.foodchem.2018.03.029 | |
dcterms.references | Altman, K. W. (2018). Neurologic Dysphagia. Dysphagia, 107. | |
dcterms.references | Alzheimer's Association. (2019). 2019 Alzheimer's disease facts and figures. Alzheimer's &
Dementia, 15(3), 321-387. | |
dcterms.references | Al-Hinai, K. Z., Guizani, N., Singh, V., Rahman, M. S., & Al-Subhi, L. (2013). Instrumental textural
profile analysis of date-tamarind fruit leather with different types of hydrocolloids. Food Science and Technology
Research, 19, 531–538. https://doi.org/10.3136/fstr.19.531. | |
dcterms.references | American Association of Cereal Chemists AACC. Approved Methods Committee. (2000). Approved
methods of the American association of cereal chemists (Vol. 1). Amer Assn of Cereal Chemists. | |
dcterms.references | Anukiruthika, T., Moses, J. A., & Anandharamakrishnan, C. (2020). 3D printing of egg yolk and white
with rice flour blends. Journal of Food Engineering, 265, 109691. | |
dcterms.references | AOAC (Association of Official Analytical Chemists) (2019). Official method of analysis (21st ed.).
Washington, DC: Association of Official Analytical Chemist. | |
dcterms.references | Assad-Bustillos, M., Tournier, C., Septier, C., Della Valle, G., & Feron, G. (2019). Relationships of
oral comfort perception and bolus properties in the elderly with salivary flow rate and oral health status for two
soft cereal foods. Food Research International, 118, 13-21. | |
dcterms.references | Artiles, C. E., Regan, J., & Donnellan, C. (2021). Dysphagia screening in residential care settings: A
scoping review. International journal of nursing studies, 114, 103813.
https://doi.org/10.1016/j.ijnurstu.2020.103813 | |
dcterms.references | Attrill, S., White, S., Murray, J., Hammond, S., & Doeltgen, S. (2018). Impact of oropharyngeal
dysphagia on healthcare cost and length of stay in hospital: a systematic review. BMC health services research,
18(1), 1-18. https://doi.org/10.1186/s12913-018-3376-3 | |
dcterms.references | Baiano, A. (2020). 3D printed Foods: A comprehensive review on technologies, nutritional value,
safety, consumer attitude, regulatory framework, and economic and sustainability issues. Food Reviews
International, 1-31. | |
dcterms.references | Bailly, N., Maître, I., & Van Wymelbeke, V. (2015). Relationships between nutritional status,
depression and pleasure of eating in aging men and women. Archives of gerontology and geriatrics, 61(3),
330-336. | |
dcterms.references | Barbon, C. E., & Steele, C. M. (2018). Thickened liquids for dysphagia management: a current review
of the measurement of liquid flow. Current physical medicine and rehabilitation reports, 6(4), 220-226. | |
dcterms.references | Beck, M., Birkelund, R., Poulsen, I., & Martinsen, B. (2019). Hospital meals are existential asylums
to hospitalized people with a neurological disease: A phenomenological–hermeneutical explorative study of the
meaningfulness of mealtimes. Nursing Open, 6(2), 626-634. | |
dcterms.references | Berk, Z. (2018). Food process engineering and technology. Academic press. | |
dcterms.references | Bourdiol, P., Hennequin, M., Peyron, M. A., & Woda, A. (2020). Masticatory adaptation to occlusal
changes. Frontiers in Physiology, 263. | |
dcterms.references | Blasco Bell, P. E. (2020). Impresión 3d de crema de almendras (Doctoral dissertation, Universitat
Politècnica de València). | |
dcterms.references | Burton, S., Laverty, A., & Macleod, M. (2012). The dietitian’s role in diagnosis and treatment of
dysphagia. In O. Ekberg (Ed.), Dysphagia: Diagnosis and treatment (pp. 507–518). New York, NY: Springer. | |
dcterms.references | Caballero, C. P. A., Ronda B. M. F., Villanueva, B. M, Harasym, J., Arratibel, G. A., Juarez, M. F.,
Roura, C. E. (2018). Patente No. ES1219610 Producto alimenticio adaptado y listo para consumir para
pacientes con disfagia. | |
dcterms.references | Carulla Falla, J. M. (2013). Actividad de la poligalacturonasa y atributos morfoestructurales como
indicadores del avance de la senescencia de la papaya (Carica papaya l.) fresca precortada (Master's thesis,
Universidad de La Sabana). | |
dcterms.references | Cichero, J. A., Jackson, O., Halley, P. J., & Murdoch, B. E. (2000). How thick is thick? Multicenter
study of the rheological and material property characteristics of mealtime fluids and videofluoroscopy fluids.
Dysphagia, 15(4), 188-200. | |
dcterms.references | Cichero JA, Steele C, Duivestein J, Clavé P, Chen J, Kayashita J, et al. (2013). The need for
international terminology and definitions for texture-modified foods and thickened liquids used in dysphagia
management: foundations of a global initiative. Curr Phys Med Rehabil Rep1:280–291. | |
dcterms.references | Cichero, J. A. Y. (2016). Adjustment of food textural properties for elderly patients. Journal of Texture
Studies, 47(4), 277-283. | |
dcterms.references | Cichero, J. A., Lam, P., Steele, C. M., Hanson, B., Chen, J., Dantas, R. O., ... & Stanschus, S. (2017).
Development of international terminology and definitions for texture-modified foods and thickened fluids used
in dysphagia management: the IDDSI framework. Dysphagia, 32(2), 293-314. | |
dcterms.references | Cáceres Rivera, C. (2018). Metodología empleada para la obtención de nanocápsulas de
betaglucanos provenientes del Hongo Ganoderma Lucidum: una revisión sistemática de la literatura (Master's
thesis, Universidad de La Sabana). | |
dcterms.references | Chambers, E., Jenkins, A., & Mertz Garcia, J. (2017). Sensory texture analysis of thickened liquids
during ingestion. Journal Of Texture Studies, 48(6), 518-529. https://doi.org/10.1111/jtxs.12265 | |
dcterms.references | Chianese, R., Coccurello, R., Viggiano, A., Scafuro, M., Fiore, M., Coppola, G., ... & Meccariello, R.
(2018). Impact of dietary fats on brain functions. Current neuropharmacology, 16(7), 1059-1085. | |
dcterms.references | Costa, A., Carrión, S., Puig-Pey, M., Juárez, F., & Clavé, P. (2019). Triple adaptation of the
mediterranean diet: Design of a meal plan for older people with oropharyngeal dysphagia based on home
cooking. Nutrients, 11(2), 425. https://doi.org/10.3390/nu11020425 | |
dcterms.references | Costakis Jr, W. J., Rueschhoff, L. M., Diaz-Cano, A. I., Youngblood, J. P., & Trice, R. W. (2016).
Additive manufacturing of boron carbide via continuous filament direct ink writing of aqueous ceramic
suspensions. Journal of the European ceramic society, 36(14), 3249-3256. | |
dcterms.references | Dahl, W. J., & Mendoza, D. R. (2017). Is Fibre an Effective Strategy to Improve Laxation in LongTerm Care Residents?. Canadian Journal of Dietetic Practice and Research, 79(1), 35-41.
https://doi.org/10.3148/cjdpr-2017-028 | |
dcterms.references | DANE. (2021) estadísticas extraído en agosto de 2021 Desde
https://www.dane.gov.co/files/investigaciones/genero/presentacion-caracteristicas-generales-adulto-mayoren-colombia.pdf | |
dcterms.references | Dankar, I., Haddarah, A., Omar, F. E., Sepulcre, F., & Pujolà, M. (2018). 3D printing technology: The
new era for food customization and elaboration. Trends in food science & technology, 75, 231-242 | |
dcterms.references | Dehkordi, A. H., Mazaheri, E., Ibrahim, H. A., Dalvand, S., & Gheshlagh, R. G. (2021). How to write
a systematic review: A narrative review. International Journal of Preventive Medicine, 12(3), 12-27. | |
dcterms.references | Dematte, M. L., Pojer, N., Endrizzi, I., Corollaro, M. L., Betta, E., Aprea, E., et al. (2014). Effects of
the sound of the bite on apple perceived crispness and hardness. Food Quality and Preference, 38, 58e64.
http://dx.doi.org/10.1016/j.foodqual.2014.05.009. | |
dcterms.references | Derossi, A., Caporizzi, R., Azzollini, D., & Severini, C. (2018). Application of 3D printing for
customized food. A case on the development of a fruit-based snack for children. Journal of Food Engineering,
220, 65-75. | |
dcterms.references | Derossi, A., Caporizzi, R., Oral, M. O., & Severini, C. (2020). Analyzing the effects of 3D printing
process per se on the microstructure and mechanical properties of cereal food products. Innovative Food
Science & Emerging Technologies, 66, 102531. | |
dcterms.references | Derossi, A., Caporizzi, R., Paolillo, M., & Severini, C. (2021). Programmable texture properties of
cereal-based snack mediated by 3D printing technology. Journal of Food Engineering, 289, 110160. | |
dcterms.references | Días‐Faceto, L. S., Salvador, A., & Conti‐Silva, A. C. (2020). Acoustic settings combination as a
sensory crispness indicator of dry crispy food. Journal of texture studies, 51(2), 232-241. | |
dcterms.references | Dick, A., Bhandari, B., & Prakash, S. (2019). 3D printing of meat. Meat science, 153, 35-44 | |
dcterms.references | Dick, A., Bhandari, B., & Prakash, S. (2021). Printability ssand textural assessment of modifiedtexture cooked beef pastes for dysphagia patients. Future Foods, 100006. | |
dcterms.references | Doorduijn, A. S., De Van Der Schueren, M. A., Van De Rest, O., De Leeuw, F. A., Hendriksen, H.,
Teunissen, C. E., ... & Visser, M. (2020). Energy intake and expenditure in patients with Alzheimer’s disease
and mild cognitive impairment: the NUDAD project. Alzheimer's research & therapy, 12(1), 1-8. | |
dcterms.references | Endo, H., Ino, S., & Fujisaki, W. (2016). The effect of a crunchy pseudo-chewing sound on perceived
texture of softened foods. Physiology and Behavior, 167,324e331.
http://dx.doi.org/10.1016/j.physbeh.2016.10.001. | |
dcterms.references | Endo, H., Ino, S., & Fujisaki, W. (2017). Texture-dependent effects of pseudo-chewing sound on
perceived food texture and evoked feelings in response to nursing care foods. Appetite, 116, 493-501. | |
dcterms.references | Fan, Y., Zhang, M., Bhesh, B., & Yaping, L. (2018). Investigation on lemon juice gel as food material
for 3D printing and optimization of printing parameters. LWT – Food Science and Technology, 87, 67–76. | |
dcterms.references | Farouk, M. M., Yoo, M. J., Hamid, N. S., Staincliffe, M., Davies, B., & Knowles, S. O. (2018). Novel
meat-enriched foods for older consumers. Food Research International, 104, 134-142. | |
dcterms.references | Feilden, E., Blanca, E. G. T., Giuliani, F., Saiz, E., & Vandeperre, L. (2016). Robocasting of structural
ceramic parts with hydrogel inks. Journal of the European Ceramic Society, 36(10), 2525-2533. | |
dcterms.references | Fetherstonhaugh, D., Haesler, E., & Bauer, M. (2019). Promoting mealtime function in people with
dementia: A systematic review of studies undertaken in residential aged care. International Journal of Nursing
Studies, 96, 99-118. | |
dcterms.references | Flórez, C. E., Martínez, L., & Aranco, N. (2019). Envejecimiento y atención a la dependencia en Colombia. | |
dcterms.references | Franco Giraldo, F. A., & Arboleda Montoya, L. M. (2010). Social and cultural characteristics
influencing alimentary and nutritional aspects of elderly people, living in a center care Colonia de Belencito,
Medellín-Colombia. Perspectivas en Nutrición Humana, 12(1), 61-74. | |
dcterms.references | Fujita, Y., & Maki, K. (2018). Association of feeding behavior with jaw bone metabolism and tongue
pressure. Japanese Dental Science Review, 54(4), 174-182. | |
dcterms.references | Funami, T., Ishihara, S., Nakauma, M., Kohyama, K., & Nishinari, K. (2012). Texture design for
products using food hydrocolloids. Food Hydrocolloids, 26(2), 412-420. | |
dcterms.references | Funami, T. (2016). The formulation design of elderly special diets. Journal of Texture Studies, 47(4),
313-322. | |
dcterms.references | Gallegos-Montes, C., Brito-De-La Fuente, E., Quinchia-Bustamante, L. A., Pestana, E. A.,
Staudinger-Prévost, N., & Assegehegn, G. (2016). U.S. Patent Application No. 14/780,026. | |
dcterms.references | Gallegos, C., Brito-De La Fuente, E.,Clavé, P., Costa, A., & Assegehegn, G. (2017). Nutritional
aspects of dysphagia management. Advances in food and nutrition research, 81, 271-318.
https://doi.org/10.1016/bs.afnr.2016.11.008 | |
dcterms.references | Gallego, M., Barat, J. M., Grau, R., & Talens, P. (2022). Compositional, structural design and
nutritional aspects of texture-modified foods for the elderly. Trends in Food Science & Technology,119, 152-
163. https://doi.org/10.1016/j.tifs.2021.12.008 | |
dcterms.references | García-Segovia, P., García-Alcaraz, V., Balasch-Parisi, S., & Martínez-Monzó, J. (2020). 3D printing
of gels based on xanthan/konjac gums. Innovative Food Science & Emerging Technologies, 64, 102343. | |
dcterms.references | Garda, M. R. (2020). Técnicas del manejo de los alimentos. Eudeba. | |
dcterms.references | Giraldo, F. J. T., Pinzón, L. I. B., Almonacid, S. L. V., Lenis, D. O., & Cárdenas, M. M. G. (2021).
Índice de envejecimiento activo en Colombia: análisis basado en la Encuesta Nacional de Salud, Bienestar y
Envejecimiento (SABE Colombia 2015). Revista Panamericana de Salud Pública, 45. | |
dcterms.references | Giura, L., Urtasun, L., Belarra, A., Ansorena, D., & Astiasarán, I. (2021). Exploring Tools for Designing
Dysphagia-Friendly Foods: A Review. Foods, 10(6), 1334. | |
dcterms.references | Godoi, F. C., Prakash, S., & Bhandari, B. R. (2016). 3d printing technologies applied for food design:
Status and prospects. Journal of Food Engineering, 179, 44-54. | |
dcterms.references | González, A., Cáez, G., Moreno, F., Rodríguez, N., & Sotelo, I. (2012). Análisis combinado acústicomecánico durante el almacenamiento de cebolla (allium fistulosum) mínimamente procesada. Scientia
Agropecuaria, 3(2), 117-122. | |
dcterms.references | Gosney, M. (2019). Patient Food Preferences can help plan hospital menus for older patients.
Advances in Research, 1-7. https://doi.org/10.9734/air/2019/v19i130113 | |
dcterms.references | Gross, B., Lockwood, S. Y., & Spence, D. M. (2017). Recent advances in analytical chemistry by 3D
printing. Analytical Chemistry, 89(1), 57-70. | |
dcterms.references | Guo, C., Zhang, M., & Devahastin, S. (2020). 3D extrusion-based printability evaluation of selected
cereal grains by computational fluid dynamic simulation. Journal of Food Engineering, 286, 110113. | |
dcterms.references | Hadde, E. K., & Chen, J. (2020). Texture and texture assessment of thickened fluids and texture‐
modified food for dysphagia management. Journal of Texture Studies. | |
dcterms.references | Hadde, E. K., Cichero, J. A. Y., Zhao, S., Chen, W., & Chen, J. (2019). The importance of extensional
rheology in bolus control during swallowing. Scientific reports, 9(1), 1-10. | |
dcterms.references | Hadde, E. K., Nicholson, T. M., & Cichero, J. A. Y. (2015). Rheological characterisation of thickened
fluids under different temperature, pH and fat contents. Nutrition & Food Science. | |
dcterms.references | Hadde, E. K., Nicholson, T. M., & Cichero, J. A. Y. (2015). Rheological characterisation of thickened
fluids under different temperature, pH and fat contents. Nutrition & Food Science. | |
dcterms.references | He, C., Zhang, M., & Fang, Z. (2020). 3D printing of food: Pretreatment and post-treatment of
materials. Critical reviews in food science and nutrition, 60(14), 2379-2392. | |
dcterms.references | Hechavarría Ávila, M. M., Ramírez Romaguera, M., García Hechavarria, H., & García Hechavarria,
A. (2018). El envejecimiento. Repercusión social e individual. Revista información científica, 97(6), 1173-1188. | |
dcterms.references | Heelan, M., Prieto, J., Roberts, H., Gallant, N., Barnes, C., & Green, S. (2020). The use of finger
foods in care settings: an integrative review. Journal of Human Nutrition and Dietetics, 33(2), 187-197. | |
dcterms.references | Hemsley, B., Palmer, S., Kouzani, A., Adams, S., & Balandin, S. (2019). Review informing the design
of 3D food printing for people with swallowing disorders: constructive, conceptual, and empirical problems. In
HICSS 52: Proceedings of the 52nd Annual Hawaii International Conference on System Sciences (pp. 5735-
5744). University of Hawai'i at Manoa. | |
dcterms.references | Horwarth, M., Ball, A., & Smith, R. (2005). Taste preference and rating of commercial and natural
thickeners. Rehabilitation Nursing, 30(6), 239-246. | |
dcterms.references | Holland, S., Foster, T., MacNaughtan, W., & Tuck, C. (2018). Design and characterisation of food
grade powders and inks for microstructure control using 3D printing. Journal of food Engineering, 220, 12-19. | |
dcterms.references | Huang, S. H., Liu, P., Mokasdar, A., & Hou, L. (2013). Additive manufacturing and its societal impact:
a literature review. The International Journal of Advanced Manufacturing Technology, 67(5-8), 1191-1203. | |
dcterms.references | Huang, M. S., Zhang, M., Bhandari, B., & Liu, Y. (2020). Improving the three‐dimensional printability
of taro paste by the addition of additives. Journal of Food Process Engineering, 43(5), e13090. | |
dcterms.references | IDDSI. (2019). IDDSI The International Dysphagia Diet Standardisation Initiative framework.
Retrieved from https://iddsi.org/IDDSI/media/images/Complete_IDDSI_Framework_Final_31July2019.pdf | |
dcterms.references | Inamoto, Y., Pongpipatpaiboon, K., Shibata, S., Aoyagai, Y., Kagaya, H., & Matsuo, K. (2018).
Swallowing exercises. In Dysphagia evaluation and treatment (pp. 109-155). Springer, Singapore. | |
dcterms.references | Instituto Colombiano de Bienestar Familiar (ICBF). Tabla de Composición de Alimentos. Bogotá
(Colombia): ICBF; 2018. (citado 2021 agosto 09). Disponible en:
https://www.icbf.gov.co/bienestar/nutricion/tabla-alimentos. [ Links ] | |
dcterms.references | Izdebska, J., & Zolek-Tryznowska, Z. (2016). 3D food printing–facts and future. Agro FOOD Industry
Hi Tech, 27(2), 33-37. | |
dcterms.references | Jiang, H., Zheng, L., Zou, Y., Tong, Z., Han, S., & Wang, S. (2019). 3D food printing: Main
components selection by considering rheological properties. Critical reviews in food science and nutrition,
59(14), 2335-2347. | |
dcterms.references | Julio, M. P. M., Clavero, A. E., & Soler, M. L. M. (2018). Estado nutricional y factores asociados en
mayores de 75 años no institucionalizados. Revista Brasileira de Enfermagem, 71, 1007-1012. | |
dcterms.references | Kang, M. G., Choi, J. H., & Kho, H. S. (2020). Relationships between gustatory function tests. Oral
Diseases, 26(4), 830-837 | |
dcterms.references | Keller, H., Beck, A. M., & Namasivayam, A. (2015). Improving food and fluid intake for older adults
living in long-term care: A research agenda. Journal of the American Medical Directors Association, 16(2), 93-
100. | |
dcterms.references | Kerwood, C. C., Hull, M., Skelding, W., & Wiederhold, M. V. (2019). U.S. Patent No. 10,342,249.
Washington, DC: U.S. Patent and Trademark Office. | |
dcterms.references | Ketel, E. C., Aguayo-Mendoza, M. G., de Wijk, R. A., de Graaf, C., Piqueras-Fiszman, B., & Stieger,
M. (2019). Age, gender, ethnicity and eating capability influence oral processing behaviour of liquid, semi-solid
and solid foods differently. Food Research International, 119, 143-151.
https://doi.org/10.1016/j.foodres.2019.01.048 | |
dcterms.references | Kim, H. W., Bae, H., & Park, H. J. (2017). Classification of the printability of selected food for 3D
printing: Development of an assessment method using hydrocolloids as reference material. Journal of Food
Engineering, 215, 23-32. | |
dcterms.references | Kim, H., Hwang, H. I., Song, K. W., & Lee, J. (2017). Sensory and rheological characteristics of
thickened liquids differing concentrations of a xanthan gum‐based thickener. Journal of texture studies, 48(6),
571-585. | |
dcterms.references | Kohyama, K. (2020). Food Texture–sensory evaluation and instrumental measurement. Textural
characteristics of world foods, 1-13. | |
dcterms.references | Larco, D. J. G., Campaña, G. G. R., Garzón, E. A. C., & Cevallos, F. A. S. (2022). Influencia en la
viscosidad de los fluidos en el sistema abs. Polo del Conocimiento: Revista científico-profesional, 7(4), 49. | |
dcterms.references | Leonard, R. J., White, C., McKenzie, S., & Belafsky, P. C. (2014). Effects of bolus rheology on
aspiration in patients with dysphagia. Journal of the Academy of Nutrition and Dietetics, 114(4), 590-594. | |
dcterms.references | Lin, Y. J., Punpongsanon, P., Wen, X., Iwai, D., Sato, K., Obrist, M., & Mueller, S. (2020). FoodFab:
creating food perception illusions using food 3D printing. In Proceedings of the 2020 CHI Conference on Human
Factors in Computing Systems (pp. 1-13). | |
dcterms.references | Liu, Z., Chen, H., Zheng, B., Xie, F., & Chen, L. (2020). Understanding the structure and rheological
properties of potato starch induced by hot-extrusion 3D printing. Food Hydrocolloids, 105812. | |
dcterms.references | Liu, H., Wang, X., Chen, J., & der Glas, H. (2020). The Influence of Initial Breakage on Size Reduction
during Habitual Chewing of a Solid Test Food. Archives Of Oral Biology, 118, 104852. doi:
https://doi.org/10.1016/j.archoralbio.2020.104852 | |
dcterms.references | Liu, Z., Zhang, M., Bhandari, B., & Wang, Y. (2017). 3D printing: Printing precision and application in
food sector. Trends in Food Science & Technology, 69, 83-94. | |
dcterms.references | Liu, Z., Zhang, M., Bhandari, B., & Yang, C. (2018). Impact of rheological properties of mashed
potatoes on 3D printing. Journal of Food Engineering, 220, 76-82. | |
dcterms.references | Liu, Z., Zhang, M., & Bhandari, B. (2018). Effect of gums on the rheological, microstructural and
extrusion printing characteristics of mashed potatoes. International journal of biological macromolecules, 117,
1179-1187 | |
dcterms.references | Lorieau, L., Septier, C., Laguerre, A., Le Roux, L., Hazart, E., Ligneul, A., ... & Labouré, H. (2018).
Bolus quality and food comfortability of model cheeses for the elderly as influenced by their texture. Food
Research International,111, 31-38. https://doi.org/10.1016/j.foodres.2018.05.013 | |
dcterms.references | Mahan, L. K., Escott-Stump, S., & Raymond, J. L. (2013). Krause dietoterapia. Amsterdam: Elsevier.
Marced Adriá, J. (2016). Evaluación de formulaciones alimentarias para su impresión en 3D (Doctoral
dissertation, Universitat Politècnica de València). | |
dcterms.references | Marcus, J. B. (2019). Aging, Nutrition and Taste: Nutrition, Food Science and Culinary Perspectives
for Aging Tastefully. Academic Press. https://doi.org/10.1016/B978-0-12-813527-3.00009-0 | |
dcterms.references | Martínez-Monzó, J., Cárdenas, J., & García-Segovia, P. (2019). Effect of temperature on 3D printing
of commercial potato puree. Food Biophysics, 14(3), 225-234. | |
dcterms.references | Matsuo, K., & Fujishima, I. (2020). Textural changes by mastication and proper food texture for
patients with oropharyngeal dysphagia. Nutrients, 12(6), 1613. | |
dcterms.references | Mayo Clinic (2020). Alzheimer's and dementia care: Making mealtimes easier.
https://www.mayoclinic.org/healthy-lifestyle/caregivers/in-depth/alzheimers/art-20047918 | |
dcterms.references | Merino, G., Gómez, I., Marín-Arroyo, M. R., Beriain, M. J., & Ibañez, F. C. (2020). Methodology for
design of suitable dishes for dysphagic people. Innovative Food Science & Emerging Technologies, 64,
102383. | |
dcterms.references | Michael Molitch; 2020. The State of Food 3D Printing, Part 1: Beginnings (citado 2021 agosto 09).
Disponible en: https://3dprint.com/261879/the-state-of-food-3d-printing-part-1-beginnings/ [ Links ] | |
dcterms.references | Munialo, C. D., Kontogiorgos, V., Euston, S. R., & Nyambayo, I. (2020). Rheological, tribological and
sensory attributes of texture‐modified foods for dysphagia patients and the elderly: A review. International
Journal of Food Science & Technology, 55(5), 1862-1871. | |
dcterms.references | National Research Council. (1989). Recommended dietary allowances. | |
dcterms.references | Nachal, N., Moses, J. A., Karthik, P., & Anandharamakrishnan, C. (2019). Applications of 3D printing
in food processing. Food Engineering Reviews, 11(3), 123-141. | |
dcterms.references | Nations, U. (2019). World population prospects 2019. Department of Economic and Social Affairs,
(141). | |
dcterms.references | Nelson, A. Z., Schweizer, K. S., Rauzan, B. M., Nuzzo, R. G., Vermant, J., & Ewoldt, R. H. (2019).
Designing and transforming yield-stress fluids. Current Opinion in Solid State and Materials Science, 23(5),
100758. | |
dcterms.references | Nelson, A. Z., & Ewoldt, R. H. (2017). Design of yield-stress fluids: A rheology-to-structure inverse
problem. Soft matter, 13(41), 7578-7594. | |
dcterms.references | Newman, R., Vilardell, N., Clavé, P., & Speyer, R. (2016). Effect of bolus viscosity on the safety and
efficacy of swallowing and the kinematics of the swallow response in patients with oropharyngeal dysphagia:
white paper by the European Society for Swallowing Disorders (ESSD). Dysphagia, 31(2), 232-249. | |
dcterms.references | Nifli, A. P. (2018). Appetite, metabolism and hormonal regulation in normal ageing and dementia.
Diseases, 6(3), 66. | |
dcterms.references | Ningtyas, D. W., Bhandari, B., Bansal, N., & Prakash, S. (2019). Sequential aspects of cream cheese
texture perception using temporal dominance of sensations (TDS) tool and its relation with flow and lubrication
behaviour. Food Research International, 120, 586-594. | |
dcterms.references | Nishinari, K., Takemasa, M., Su, L., Michiwaki, Y., Mizunuma, H., & Ogoshi, H. (2011). Effect of shear
thinning on aspiration–Toward making solutions for judging the risk of aspiration. Food Hydrocolloids, 25(7),
1737-1743. | |
dcterms.references | Nishinari, K., Turcanu, M., Nakauma, M., & Fang, Y. (2019). Role of fluid cohesiveness in safe
swallowing. npj Science of Food, 3(1), 1-13. | |
dcterms.references | ODS. Objetivos de desarrollo sostenible. Consultado en: https://www.ods.gov.co/es/objetivos
(accessed agosto 09, 2021). | |
dcterms.references | Okkels, S.L., Saxosen, M., B€ugel, S., Olsen, A., Klausen, T.W. & Beck, A.M. (2018).
Acceptance of texture-modified in-betweenmeals among old adults with dysphagia. Clinical Nutrition
ESPEN,25, 126–132. | |
dcterms.references | OMS. Organización Mundial de la Salud. Malnutrition. Consultado en:
https://www.who.int/news-room/fact-sheets/detail/malnutrition (accessed agosto 09, 2021).
OMS. Organización Mundial de la Salud. Estado de salud de la población. Salud del adulto mayor.
Fecha de consulta: 09 de agosto de 2021. Disponible en: https://www.paho.org/salud-en-las-americas2017/?post_t_es=salud-deladulto-mayor&lang=es | |
dcterms.references | OMS. Organización Mundial de la Salud. Envejecimiento. Consultado en https://www.who.int/es/newsroom/fact-sheets/detail/ageing-and-health WHO. 2019 | |
dcterms.references | Ong, J. J. X., Steele, C. M., & Duizer, L. M. (2018). Sensory characteristics of liquids thickened with
commercial thickeners to levels specified in the International Dysphagia Diet Standardization Initiative (IDDSI)
framework. Food hydrocolloids, 79, 208-217. https://doi.org/10.1016/j.foodhyd.2017.12.035 | |
dcterms.references | Ordre des dietetistes du Quebec. (2000). Manuel de Nutrition Clinique. Chapitre 16.4. Ordre des
dietetistes du Quebec, Montreal, QC. | |
dcterms.references | Ortega, O., Martín, A., & Clavé, P. (2017). Diagnosis and management of oropharyngeal dysphagia
among older persons, state of the art. Journal of the American Medical Directors Association, 18(7), 576-582.
https://doi.org/10.1016/j.jamda.2017.02.015 | |
dcterms.references | Osuna, M. B., Romero, C. A., Romero, A. M., Judis, M. A., & Bertola, N. C. (2018). Proximal
composition, sensorial properties and effect of ascorbic acid and α-tocopherol on oxidative stability of bread
made with whole flours and vegetable oils. LWT, 98, 54-61. | |
dcterms.references | Özsürekci, C., Arslan, S. S., Demir, N., Çalışkan, H., Şengül Ayçiçek, G., Kılınç, H. E., ...& Sümer, F.
(2020). Timing of Dysphagia Screening in Alzheimer's Dementia. Journal of Parenteral and Enteral Nutrition,
44(3), 516-524. https://doi.org/10.1002/jpen.1664 | |
dcterms.references | Pant, A., Lee, A. Y., Karyappa, R., Lee, C. P., An, J., Hashimoto, M., ... & Zhang, Y. (2021). 3D food
printing of fresh vegetables using food hydrocolloids for dysphagic patients. Food Hydrocolloids, 114, 106546. | |
dcterms.references | Park, J. W., Lee, S., Yoo, B., & Nam, K. (2020). Effects of texture properties of semi-solid food on the
sensory test for pharyngeal swallowing effort in the older adults. BMC geriatrics, 20(1), 1-5. | |
dcterms.references | Park, J. W., Oh, G. R., & Park, Y. S. (2012). Comparison of the thickeners used in dysphagia treatment.
Journal of the Korean Dysphagia Society, 2(2), 67-72. | |
dcterms.references | Pati, D., & Lorusso, L. N. (2018). How to write a systematic review of the literature. HERD: Health
Environments Research & Design Journal, 11(1), 15-30. | |
dcterms.references | Pérez, B., Nykvist, H., Brøgger, A. F., Larsen, M. B., & Falkeborg, M. F. (2019). Impact of
macronutrients printability and 3D-printer parameters on 3D-food printing: A review. Food chemistry, 287, 249-
257. | |
dcterms.references | Pisco Caldas, J. W. (2019). Caracterización reológica de una bebida elaborada con exudado de cacao
(Theobroma cacao L.) CCN51 y suero láctico. | |
dcterms.references | Pivi, G. A. K., de Andrade Vieira, N. M., da Ponte, J. B., de Moraes, D. S. C., & Bertolucci, P. H. F.
(2017). Nutritional management for Alzheimer’s disease in all stages: mild, moderate, and severe. Nutrire,
42(1), 1-6. https://doi.org/10.1186/s41110-016-0025-7 | |
dcterms.references | Pouyet, V., Giboreau, A., Benattar, L., & Cuvelier, G. (2014). Attractiveness and consumption of finger
foods in elderly Alzheimer’s disease patients. Food quality and preference, 34, 62-69. | |
dcterms.references | Pulatsu, E., Su, J. W., Lin, J., & Lin, M. (2020). Factors affecting 3D printing and post-processing
capacity of cookie dough. Innovative Food Science & Emerging Technologies, 61, 102316. | |
dcterms.references | Pérez-Rodrigo, C., & Aranceta-Bartrina, J. (2021). Role of gastronomy and new technologies in
shaping healthy diets. In Gastronomy and Food Science (pp. 19-34). Academic Press. | |
dcterms.references | Raheem, D., Carrascosa, C., Ramos, F., Saraiva, A., & Raposo, A. (2021). Texture-Modified Food
for Dysphagic Patients: A Comprehensive Review. International Journal of Environmental Research and Public
Health, 18(10), 5125. | |
dcterms.references | Rayna, T., & Striukova, L. (2016). From rapid prototyping to home fabrication: How 3D printing is
changing business model innovation. Technological Forecasting and Social Change, 102, 214-224. | |
dcterms.references | Resolución 810 de 2021 - Reglamento Técnico de Etiquetado en Colombia,» 24 6 2021. [En línea].
Available: https://dentons.cardenascardenas.com/es/insights/articles/2021/june/24/resolution-810-of-2021-
technical-regulationof-labeling-in-colombia. | |
dcterms.references | Ricci, I., Derossi, A., & Severini, C. (2019). 3D printed food from fruits and vegetables. In
Fundamentals of 3D food printing and applications (pp. 117-149). Academic Press. | |
dcterms.references | Rodríguez, M. G., & Sichacá, E. G. (2019). Mortalidad por desnutrición en el adulto mayor, Colombia,
2014-2016. Biomédica, 39(4), 663-672. | |
dcterms.references | Rombauer, I. S., Becker, M. R., Becker, E., Becker, J., & Scott, M. (2019). Joy of cooking: 2019
edition fully revised and updated. Scribner | |
dcterms.references | Ross, A. I., Tyler, P., Borgognone, M. G., & Eriksen, B. M. (2019). Relationships between shear
rheology and sensory attributes of hydrocolloid-thickened fluids designed to compensate for impairments in
oral manipulation and swallowing. Journal of food engineering, 263, 123-131.
https://doi.org/10.1016/j.jfoodeng.2019.05.040 | |
dcterms.references | Rubio, E., & Hurtado, S. (2019). 3D Food Printing Technology at Home, Domestic Application. In
Fundamentals of 3D Food Printing and Applications (pp. 289-329). Academic Press. | |
dcterms.references | Rusu, A., Randriambelonoro, M., Perrin, C., Valk, C., Álvarez, B., & Schwarze, A. K. (2020). Aspects
influencing food intake and approaches towards personalising nutrition in the elderly. Journal of Population
Ageing, 1-18. | |
dcterms.references | Saitoh, E., Pongpipatpaiboon, K.,Inamoto, Y., & Kagaya, H. (2018). Dysphagia Evaluation and
Treatment. Springer. | |
dcterms.references | Salas-Salvadó, J., Torres, M., Planas, M., Altimir, S., Pagan, C., Gonzalez, M. E., ... & García-Lorda,
P. (2005). Effect of oral administration of a whole formula diet on nutritional and cognitive status in patients
with Alzheimer's disease. Clinical Nutrition, 24(3), 390-397. | |
dcterms.references | Sanchez, N., Gutiérrez‐López, G. F., & Cáez‐Ramírez, G. (2020). Correlation among PME activity,
viscoelastic, and structural parameters for Carica papaya edible tissue along ripening. Journal of Food Science. | |
dcterms.references | Sarkar, A., Soltanahmadi, S., Chen, J., & Stokes, J. R. (2021). Oral tribology: Providing insight into
oral processing of food colloids. Food Hydrocolloids, 117, 106635. | |
dcterms.references | Savazzi, F., Isernia, S., Farina, E., Fioravanti, R., D’Amico, A., Saibene, F. L., ... & Baglio, F. (2020).
“Art, Colors, and Emotions” Treatment (ACE-t): A Pilot Study on the Efficacy of an Art-Based Intervention for
People with Alzheimer’s Disease. Frontiers in psychology, 11, 1467. | |
dcterms.references | Scheele, S. C., Hartmann, C., Siegrist, M., Binks, M., & Egan, P. F. (2021) Consumer Assessment
of 3D Printed Food Shape, Taste, and Fidelity using Chocolate and Marzipan Materials. | |
dcterms.references | Schwartz, C., Vandenberghe-Descamps, M., Sulmont-Rossé, C., Tournier, C., & Feron, G. (2018).
Behavioral and physiological determinants of food choice and consumption at sensitive periods of the life span,
a focus on infants and elderly. Innovative Food Science & Emerging Technologies, 46, 91-106. | |
dcterms.references | Severini C, Derossi A, Azzollini D. (2016) Variables affecting the printability of foods: Preliminary
tests on cereal-based products. Innovative food science & emerging technologies 38:281–291 | |
dcterms.references | Severini, C., Derossi, A., Ricci, I., Caporizzi, R., & Fiore, A. (2018). Printing a blend of fruit and
vegetables. New advances on critical variables and shelf life of 3D edible objects. Journal of Food Engineering,
220, 89-100. | |
dcterms.references | Sharma, M., Kristo, E., Corredig, M., & Duizer, L. (2017). Effect of hydrocolloid type on texture of
pureed carrots: Rheological and sensory measures. Food Hydrocolloids, 63, 478-487.
https://doi.org/10.1016/j.foodhyd.2016.09.040 | |
dcterms.references | Shea, T. B., & Remington, R. (2019). Relative efficacy of a nutritional intervention on cognitive
performance across the adult lifespan and during early cognitive decline. Journal of Alzheimer's disease
reports, 3(1), 251-255. | |
dcterms.references | Singh, V., Guizani, N., Al-Alawi, A., Claereboudt, M., & Rahman, M. S. (2013). Instrumental texture
profile analysis (TPA) of date fruits as a function of its physico-chemical properties. Industrial Crops and
Products, 50, 866–873. https://doi.org/10.1016/j.indcrop.2013.08.039. | |
dcterms.references | Sokamte, T. A., Mbougueng, P. D., Mohammadou, B. A., Tatsadjieu, N. L., & Sachindra, N. M. (2020).
Proximal composition and fatty acid profile of fresh and smoked fillets of Pangasius hypophthalmus. Scientific
African, 9, e00534. | |
dcterms.references | Song, X., Giacalone, D., Bølling Johansen, S., Frøst, M., & Bredie, W. (2016). Changes in orosensory
perception related to aging and strategies for counteracting its influence on food preferences among older
adults. Trends In Food Science & Technology, 53, 49-59. https://doi.org/10.1016/j.tifs.2016.04.004 | |
dcterms.references | Stading, M. (2021). Bolus rheology of texture‐modified food–effect of degree of modification. Journal
of Texture Studies | |
dcterms.references | Suebsaen, K., Suksatit, B., Kanha, N., & Laokuldilok, T. (2019). Instrumental characterization of
banana dessert gels for the elderly with dysphagia. Food Bioscience, 32, 100477. | |
dcterms.references | Sulmont-Rossé, C., Symoneaux, R., Feyen, V., & Maître, I. (2018). Improving food sensory quality
with and for elderly consumers. In Methods in Consumer Research, Volume 2 (pp. 355-372). Woodhead
Publishing | |
dcterms.references | Sun J, Peng Z, Zhou W, Fuh JYH, Hong GS, Chiu A (2015) A review on 3D printing for customized
food fabrication. Procedia Manuf 1:308–319 | |
dcterms.references | Sungsinchai, S., Niamnuy, C., Wattanapan, P., Charoenchaitrakool, M., & Devahastin, S. (2019).
Texture modification technologies and their opportunities for the production of dysphagia foods: A review.
Comprehensive reviews in food science and food safety, 18(6), 1898-1912. | |
dcterms.references | Syahariza, Z. A., & Yong, H. Y. (2017). Evaluation of rheological and textural properties of texturemodified rice porridge using tapioca and sago starch as thickener. Journal of Food Measurement and
Characterization, 11(4), 1586-1591. https://doi.org/10.1007/s11694-017-9538-x | |
dcterms.references | Szczesniak, A. S. (1963). Classification of Textural Characteristics a. Journal of food science, 28(4),
385-389 | |
dcterms.references | Szczesniak, A. S. (2002). Texture is a sensory property. Food quality and preference, 13(4), 215-
225. | |
dcterms.references | Takagi, D., Hirano, H., Watanabe, Y., Edahiro, A., Ohara, Y., Yoshida, H., ... & Hironaka, S. (2017).
Relationship between skeletal muscle mass and swallowing function in patients with Alzheimer's disease.
Geriatrics & Gerontology International, 17(3), 402-409. | |
dcterms.references | Talens, P., Castells, M. L., Verdú, S., Barat, J. M., & Grau, R. (2021). Flow, viscoelastic and
masticatory properties of tailor made thickened pea cream for people with swallowing problems. Journal of
Food Engineering, 292, 110265. | |
dcterms.references | Tirado, D. F., Montero, P. M., & Acevedo, D. (2015). Estudio comparativo de métodos empleados
para la determinación de humedad de varias matrices alimentarias. Información tecnológica, 26(2), 03-10. | |
dcterms.references | Torres Benítez, B. Y., Barrios Escorcia, L. P., Berrio Herrera, V. P., Escobar Camaño, D. A.,
Fernández De La Cruz, A. L., González Bonett, M. F., ... & Mostapha, A. (2021). Enfermedad de Alzheimer:
nuevas opciones terapéuticas paliativas. | |
dcterms.references | Torres, O., Yamada, A., Rigby, N. M., Hanawa, T., Kawano, Y., & Sarkar, A. (2019). Gellan gum: A
new member in the dysphagia thickener family. Biotribology, 17, 8-18. | |
dcterms.references | Torrez, K., Sotelo, I., Caez, G. (2022). Mechanical and rheological categorization of food patterns
suitable for older adults with swallowing limitation. Journal of Food Properties, 2627-2660. | |
dcterms.references | Troncoso-Pantoja, C., Alarcón-Riveros, M., & Amaya-Placencia, A. (2019). Significado emocional de
la alimentación en personas mayores. Revista de la Facultad de Medicina, 67(1), 51-55. | |
dcterms.references | United Nations Department of Economic and Social Affairs, Population Division. World Population
Ageing 2020 Highlights: Living Arrangements of Older Persons. (2020). (ST/ESA/SER.A/451). Available online:
https://www.un.org/development/desa/pd/sites/www.un.org.development.desa.pd/files/files/documents/2020/
Sep/un_pop_2020_pf_ageing_10_key_messages.pdf (accessed on 20 January 2022). | |
dcterms.references | Uribe-Wandurraga, Z. N., Igual, M., Reino-Moyón, J., García-Segovia, P., & Martínez-Monzó, J.
(2020). Effect of microalgae (Arthrospira platensis and Chlorella vulgaris) addition on 3D printed cookies. Food
Biophysics, 1-13. | |
dcterms.references | Uribe-Wandurraga, Z. N., Zhang, L., Noort, M. W., Schutyser, M. A., García-Segovia, P., & MartínezMonzó, J. (2020). Printability and Physicochemical Properties of Microalgae-Enriched 3D-Printed Snacks.
Food and Bioprocess Technology, 13(11), 2029-2042. | |
dcterms.references | Vucea, V., Keller, H. H., Morrison, J. M., Duizer, L. M., Duncan, A. M., Carrier, N., ... & Steele, C. M.
(2018). Modified texture food use is associated with malnutrition in long term care: an analysis of Making the
Most of Mealtimes (M3) project. The journal of nutrition, health & aging, 22(8), 916-922.
https://doi.org/10.1007/s12603-018-1016-6 | |
dcterms.references | Vandenberghe‐Descamps, M., Sulmont‐Rossé, C., Septier, C., Feron, G., & Labouré, H. (2017).
Using food comfortability to compare food's sensory characteristics expectations of elderly people with or
without oral health problems. Journal of texture studies, 48(4), 280-287. | |
dcterms.references | Vidal Ledo, M., Oramas Díaz, J., & Borroto Cruz, R. (2015). Revisiones sistemáticas. Educación
Médica Superior, 29(1), 198-207. | |
dcterms.references | Vieira, J. M., Oliveira Jr, F. D., Salvaro, D. B., Maffezzolli, G. P., de Mello, J. D. B., Vicente, A. A., &
Cunha, R. L. (2020). Rheology and soft tribology of thickened dispersions aiming the development of
oropharyngeal dysphagia-oriented products. Current Research in Food Science, 3, 19-29. | |
dcterms.references | Vieira, M. V., Oliveira, S. M., Amado, I. R., Fasolin, L. H., Vicente, A. A., Pastrana, L. M., & Fuciños,
P. (2020). 3D printed functional cookies fortified with Arthrospira platensis: Evaluation of its antioxidant potential
and physical-chemical characterization. Food Hydrocolloids, 105893. | |
dcterms.references | Wan, Y. W., Al-Ouran, R., Mangleburg, C. G., Perumal, T. M., Lee, T. V., Allison, K., ... & Wang, M.
(2020). Meta-analysis of the Alzheimer’s disease human brain transcriptome and functional dissection in
mouse models. Cell reports, 32(2), 107908. | |
dcterms.references | Warnakulasuriya, S. N., & Nickerson, M. T. (2018). Review on plant protein–polysaccharide complex
coacervation, and the functionality and applicability of formed complexes. Journal of the Science of Food and
Agriculture, 98(15), 5559-5571. | |
dcterms.references | Watkins, R., Goodwin, V. A., Abbott, R. A., Backhouse, A., Moore, D., & Tarrant, M. (2017). Attitudes,
perceptions and experiences of mealtimes among residents and staff in care homes for older adults: a
systematic review of the qualitative literature. Geriatric Nursing, 38(4), 325-333. | |
dcterms.references | Wilkinson, C., Dijksterhuis, G. B., & Minekus, M. (2000). From food structure to texture. Trends in
Food Science & Technology, 11(12), 442-450. | |
dcterms.references | Wilson, A., Anukiruthika, T., Moses, J. A., & Anandharamakrishnan, C. (2020). Customized Shapes
for Chicken Meat–Based Products: Feasibility Study on 3D-Printed Nuggets. Food and Bioprocess Technology,
13(11), 1968-1983. | |
dcterms.references | Xiong, Y. L. (2017). Structure-function relationships of muscle proteins. In Food proteins and their
applications (pp. 341-392). CRC Press. | |
dcterms.references | Xu, L., Gu, L., Su, Y., Chang, C., Wang, J., Dong, S., ... & Li, J. (2020). Impact of thermal treatment
on the rheological, microstructural, protein structures and extrusion 3D printing characteristics of egg yolk.
Food Hydrocolloids, 100, 105399. | |
dcterms.references | Xu, F., Laguna, L., & Sarkar, A. (2019). Aging‐related changes in quantity and quality of saliva: Where
do we stand in our understanding?. Journal of Texture Studies, 50(1), 27-35. | |
dcterms.references | Yamaguchi, E., Torisu, T., Tada, H., Tanabe, Y., Kurogi, T., Mikushi, S., & Murata, H. (2019). The
influence of thickeners of food on the particle size of boluses: a consideration for swallowing. Odontology,
107(4), 546-554. | |
dcterms.references | Yang, F., M. Zhang, and Y. Liu. 2018. Effect of post-treatment micro-wave vacuum drying on the
quality of 3D-printed mango juice gel. Drying Technology:1–9. | |
dcterms.references | Yang, F., Zhang, M., Bhandari, B., & Liu, Y. (2018). Investigation on lemon juice gel as food material
for 3D printing and optimization of printing parameters. Lwt, 87, 67-76. | |
dcterms.references | Yang, F., Zhang, M., & Bhandari, B. (2017). Recent development in 3D food printing. Critical reviews
in food science and nutrition, 57(14), 3145-3153. | |
dcterms.references | Yang, F., Zhang, M., Fang, Z., & Liu, Y. (2019). Impact of processing parameters and post‐treatment
on the shape accuracy of 3D‐printed baking dough. International Journal of Food Science & Technology, 54(1),
68-74. | |
dcterms.references | Yu, J., Wang, X. Y., Li, D., Wang, L. J., & Wang, Y. (2022). Development of soy protein isolate
emulsion gels as extrusion-based 3D food printing inks: Effect of polysaccharides incorporation. Food
Hydrocolloids, 107824. | |
dcterms.references | Zampini, M., & Spence, C. (2004). The role of auditory cues in modulating the perceived crispness
and staleness of potato chips. Journal of Sensory Studies, 19,347e363. http://dx.doi.org/10.1111/j.1745-
459x.2004.080403.x. | |
dcterms.references | Zhang, J. Y., Pandya, J. K., McClements, D. J., Lu, J., & Kinchla, A. J. (2021). Advancements in 3D
food printing: a comprehensive overview of properties and opportunities. Critical Reviews in Food Science and
Nutrition, 1-18. | |
dcterms.references | Zhang, L., Lou, Y., & Schutyser, M. A. (2018). 3D printing of cereal-based food structures containing
probiotics. Food structure, 18, 14-22. | |
dcterms.references | Zhong, Q. (2019). Food rheology. In Handbook of farm, dairy and food machinery engineering (pp.
403-426). Academic Press. | |
dcterms.references | Zhou, L. Y., Fu, J., & He, Y. (2020). A review of 3D printing technologies for soft polymer materials.
Advanced Functional Materials, 30(28), 2000187. | |
thesis.degree.discipline | Facultad de Ingeniería | es_CO |
thesis.degree.level | Maestría en Diseño y Gestión de Procesos | es_CO |
thesis.degree.name | Magíster en Diseño y Gestión de Procesos | es_CO |