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    Relation: Libro La industria de alimentos: desafíos para el siglo XXI; 119; 81; La industria de alimentos: desafíos para el siglo XXI; Al-Nabulsi, A. A., Olaimat, A. N., Osaili, T. M., Ayyash, M. M., Abushelaibi, A., Jaradat, Z. W., . Holley, R. A. (2015). Behavior of Escherichia coli O157:H7 and Listeria monocytogenes during fermentation and storage of camel yogurt. Journal of Dairy Science, 1–10. http://doi.org/10.3168/jds.2015-9872; Alves, J., Marques, V. V., Pereira, L. F. P., Hirooka, E. Y., & De Oliveira, T. C. R. M. (2012). Multiplex PCR for the detection of Campylobacter spp. and Salmonella spp. in chicken meat. Journal of Food Safety, 32(3), 345–350. http://doi.org/10.1111/j.1745-4565.2012.00386.x; Asiegbu, C. V., Lebelo, S. L., & Tabit, F. T. (2016). The food safety knowl-edge and microbial hazards awareness of consumers of ready-to-eat street-vended food. Food Control, 60, 422–429. http://doi.or-g/10.1016/j.foodcont.2015.08.021; Barbosa, A. V., Cerqueira, A. de M. F., Rusak, L. A., dos Reis, C. M. F., Leal, N. C., Ernesto, H., & Vallim, D. C. (2015). Characterization of ep-idemic clones of Listeria monocytogenes serotype 4b isolated fromhumans and meat products in Brazil. Journal of Infection in Devel-oping Countries, 9(9), 962–969. http://doi.org/10.3855/jidc.5639; Bejarano-Roncancio, J. J., & Castillo-Quiroga, Y. M. (2013). Major microbiological contaminants in infant milk formulas 1. CienciaUAT, 25(1), 42–48. http://doi.org/10.1017/CBO9781107415324.004; Bejarano-Roncancio, J. J., & Suarez- Latorre, L. M. (2015). del consumo de los alimentos de, 47(3), 349 –360. http://doi.org/http://dx.doi.org/10.18273/revsal.v47n3-2015011; Bird, P., Flannery, J., Crowley, E., Agin, J., Goins, D., Monteroso, L., . Bastin, B. (2015). Evaluation of 3M (TM) molecular detection assay (MDA) Listeria monocytogenes for the detection of Listeria monocy-togenes in selected foods and environmental surfaces: Collaborative study, first action 2014.07. Journal of AOAC International, 98(4), 980–992. http://doi.org/10.5740/jaoacint.15-031; Blanco-Ríos, F. A., Casadiego-Ardila, G., & Pacheco, P. a. (2011). Calidad microbiológica de alimentos remitidos a un laboratorio de salud pública en el año 2009. Revista de Salud Pública, 13(6), 953–965. http://doi.org/10.1590/S0124-00642011000600008; Blankson, G. K., & Mill-Robertson, F. C. (2016). Aflatoxin contamination and exposure in processed cereal-based complementary foods for infants and young children in greater Accra, Ghana. Food Control, 64, 212–217. http://doi.org/10.1016/j.foodcont.2015.12.032; Bokulich, N. A., Lewis, Z. T., Boundy-Mills, K., & Mills, D. A. (2016). A new perspective on microbial landscapes within food produc-tion. Current Opinion in Biotechnology, 37, 182–189. http://doi.org/10.1016/j.copbio.2015.12.008; Burke, T., Young, I., & Papadopoulos, A. (2016). Assessing food safety knowledge and preferred information sources among 19-29 year olds. Food Control, 69, 83–89. http://doi.org/10.1016/j.food-cont.2016.04.019; Campdepadrós, M., Stchigel, A. M., Romeu, M., Quilez, J., & Solá, R. (2012). Effectiveness of two sanitation procedures for decreasing the microbial contamination levels (including Listeria monocytogenes) on food contact and non-food contact surfaces in a dessert-process-ing factory. Food Control, 23(1), 26–31. http://doi.org/10.1016/j.foodcont.2011.05.017; Campuzano, S., Flórez, D. M., Ibarra, C. M., & Sánchez, P. P. (2015). De-terminación de la calidad microbiológica y sanitaria de alimentos preparados vendidos en la vía pública de la ciudad de Bogotá DC. Nova, 13(23), 68–72. Retrieved from www.scielo.org.co/pdf/nova/v13n23/v13n23a08.pdf; Carrasco, E., Morales-Rueda, A., & García-Gimeno, R. M. (2012). Cross-contamination and recontamination by Salmonella in foods: A review. Food Research International, 45(2), 545–556. http://doi.org/10.1016/j.foodres.2011.11.004; Castillo, V. L., Peña, Y. P., Hernández, M. E., & Pereda, G. (2013). Especies patógenas de Vibrio aisladas en alimentos de origen marino, 1, 31–43. Retrieved from www.revicubalimentanut.sld.cu/Vol_23_1/Articulo_23_1_31_43.pdf; Catellani, P., Miotti Scapin, R., Alberghini, L., Radu, I. L., & Giaccone, V. (2014). Levels of microbial contamination of domestic refrigerators in Italy. Food Control, 42, 257–262. http://doi.org/10.1016/j.food-cont.2014.02.025; César, J. G., Peres, A. M., Abreu, E. T. de, Mello, J. F. de, & Rodrigues, K. L. (2015). Microbiological assessment of lettuce salads and antimi-crobial resistance of Staphylococcus spp, 32(5), 2280–2285. http://doi.org/10.3305/nh.2015.32.5.9632; Choi, J., Norwood, H., Seo, S., Sirsat, S. A., & Neal, J. (2016). Evaluation of food safety related behaviors of retail and food service employees while handling fresh and fresh-cut leafy greens. Food Control, 67, 199–208. http://doi.org/10.1016/j.foodcont.2016.02.044; Congreso de Colombia. (23 de diciembre de 1997). Reglamenta parcial-mente la ley 9 de 1979 (Decreto 3075). http://doi.org/10.1017/CBO9781107415324.004; Durand, L., Planchon, S., Guinebretiere, M. H., André, S., Carlin, F., & Remize, F. (2015). Contamination pathways of spore-forming bac-teria in a vegetable cannery. International Journal of Food Microbiol-ogy, 202, 10–19. http://doi.org/10.1016/j.ijfoodmicro.2015.02.019; El-Kholy, A. M., El-Shinawy, S. H., Meshref, A. M. S., & Korany, A. M. (2014). Microbiological quality of domiati cheese and the influence of probiotics on the behavior of Staphylococcus aureus and Escherichia coli O157: H7 in domiati cheese. Journal of Food Safety, 34(4), 396–406. http://doi.org/10.1111/jfs.12157; Faour-Klingbeil, D., Todd, E. C. D., & Kuri, V. (2016). Microbiological quality of ready-to-eat fresh vegetables and their link to food safe-ty environment and handling practices in restaurants. LWT - Food Science and Technology, 74, 224–233. http://doi.org/10.1016/j.lwt.2016.07.051; FDA Food and drug administration. (2016). Evaluation and definition of potentially hazardous foods - chapter 3. Factors that influence mi-crobial growthtle. Retrieved from http://www.fda.gov/Food/Food-ScienceResearch/SafePracticesforFoodProcesses/ucm094145.htm; Fehlhaber, K., & Janetschke, P. (1995). Higiene Veterinaria de los Alimentos(1a edición). Zaragoza, España: Editorial Acribia S.A.; Food and Drug Administration. (2012). Bad bug book: Handbook of Food-borne Pathogenic Microorganisms and Natural Toxins. Retrieved from www.fda.gov/downloads/Food/./BadBugBook/UCM297627.pdf; Gamboa-Marín, A., Buitrago, S., Pérez-Pérez, K., Mercado, M. M., Pou-tou-Piñales, R., & Carrascal-Camacho, A. (2012). Prevalence of Listeria monocytogenes in pork-meat and other processed prod-ucts from the Colombian swine industry. Revista MVZ Cordoba, 17(1), 2827–2833. Retrieved from http://www.scielo.org.co/scielo.php?script=sci_arttext&pid=S0122-02682012000100004; Gharieb, R. M., Tartor, Y. H., & Khedr, M. H. E. (2015). Non-Typhoid-al Salmonella in poultry meat and diarrhoeic patients: prevalence, antibiogram, virulotyping, molecular detection and sequencing of class I integrons in multidrug resistant strains. Gut Pathogens, 7, 34. http://doi.org/10.1186/s13099-015-0081-1; Giacometti, J., & Josic, D. (2013). Foodomics in microbial safety. TrAC - Trends in Analytical Chemistry, 52, 16–22. http://doi.org/10.1016/j.trac.2013.09.003; Gomes, S., Dias, L. G., Moreira, L. L., Rodrigues, P., & Estevinho, L. (2010). Physicochemical, microbiological and antimicrobial properties of commercial honeys from Portugal. Food and Chemical Toxicology, 48(2), 544–548. http://doi.org/10.1016/j.fct.2009.11.029; Grassi, M. A., Nucera, D., Lomonaco, S., & Civera, T. (2013). Growth poten-tial of Listeria monocytogenes in fresh sauces for pasta. Food Control, 30(1), 288–291. http://doi.org/10.1016/j.foodcont.2012.07.016; Guerrero, J. A. (2016). Enfermedades Transmitidas por alimentos. Protocolo de vigilancia en salud pública. Instituto Nacional De Salud, 3–4. Retrieved from http://www.ins.gov.co/lineas-de-accion/Subdi-reccion-Vigilancia/sivigila/Protocolos SIVIGILA/PRO Enfermedades Trans. por alimentos.pdf.; Haghi, F., Zeighami, H., Naderi, G., Samei, A., Roudashti, S., Bahari, S., & Shirmast, P. (2015). Detection of major food-borne pathogens in raw milk samples from dairy bovine and ovine herds in Iran. Small Ruminant Research, 131, 136–140. http://doi.org/10.1016/j.small-rumres.2015.08.005; Haghighat-Afshar, N., Fakhernia, M., Hassanzadazar, H., Teymori, R., Bo-louki, M., Korepaz, A., . Bahmani, M. (2014). Evaluation of mi-crobial contamination of produced juice and concentrate in West Azarbaijan Province, north west of Iran. Asian Pacific Journal of Tropical Disease, 4(Suppl 2), S830–S832. http://doi.org/10.1016/S2222-1808(14)60736-2; Haileselassie, M., Taddele, H., & Adhana, K. (2012). Source ( s ) of con-tamination of “ raw ” and “ ready -to- eat ” foods and their public health risks in Mekelle City, Ethiopia. Journal of Food and Agri-culture Science, 2(February), 20–29. http://doi.org/10.5897/ISAAB-JFAS11.030; Hassan, A., Farouk, H., Hassanein, F., & Abdul-Ghani, R. (2011). Curren-cy as a potential environmental vehicle for transmitting parasites among food-related workers in Alexandria, Egypt. Transactions of the Royal Society of Tropical Medicine and Hygiene, 105(9), 519–524. http://doi.org/10.1016/j.trstmh.2011.05.001; Havelaar, A. H., Brul, S., de Jong, A., de Jonge, R., Zwietering, M. H., & ter Kuile, B. H. (2010). Future challenges to microbial food safety. In-ternational Journal of Food Microbiology, 139(SUPPL. 1), S79–S94. http://doi.org/doi:10.1016/j.ijfoodmicro.2009.10.015; Heo, C., Kim, H. W., Ko, K. Y., Kim, K. T., & Paik, H. D. (2014). Estimation of Shelf Life with Respect to Bacillus cereus Growth in Tteokgalbi at Various Temperatures Using Predictive Models. Journal of Food Safety, 34(4), 283–291. http://doi.org/10.1111/jfs.12124; Hernandez-Urzua, M. A. (2016). Microbiología de los Alimentos. Fundamentos y aplicaciones en Ciencias de la Salud (1a edición). México D.F., México: Editorial Mëdica Panamericana S.A.; Instituto Nacional de Salud. (2016). Enfermedades no transmisibles. Boletín Epidemiológico Semanal, 1–5. http://doi.org/10.1017/CBO9781107415324.004; Jay, J., Loessner, M., & Golden, D. (2009). Microbiología Moderna de los alimentos (5a edición). Zaragoza, España: Editorial Acribia S.A.; Jiménez-Edeza, M., Chaidez-Quiroz, C., & León-Félix, J. (2012). Calidad microbiológica de carne de res comercializada en el mercado municipal de Culiacán, Sinaloa. Veterinaria Mexico, 43(4), 273–284. Retrieved from www.scielo.org.mx/pdf/vetmex/v43n4/v43n4a2.pdf; Józwa, W., & Czaczyk, K. (2012). Flow cytometric analysis of microbial contamination in food industry technological lines - initial study. Acta Scientiarum Polonorum. Technologia Alimentaria, 11(2), 111–119. Retrieved from http://www.food.actapol.net/volume11/issue2; Liguori, G., Cavallotti, I., Arnese, A., Amiranda, C., Anastasi, D., & An-gelillo, I. F. (2010). Microbiological quality of drinking water from dispensers in Italy. BMC Microbiology, 10(19), (26 January 2010). http://doi.org/Artn 19\rDoi 10.1186/1471-2180-10-19; Liu, J., Guan, X., & Schaffner, D. W. (2014). Prediction of the Growth Be-havior of Aeromonas hydrophila Using a Novel Modeling Approach: Support Vector Machine. Journal of Food Safety, 34(4), 292–299. http://doi.org/10.1111/jfs.12125; Martinović, T., Andjelković, U., Gajdošik, M. Š., Rešetar, D., & Josić, D. (2016). Foodborne pathogens and their toxins. Journal of Proteom-ics. http://doi.org/10.1016/j.jprot.2016.04.029; Masana, M. O. (2015). Factores impulsores de la emergencia de peligros biológicos en los alimentos Drivers for the emergence of biological hazards in foods. Revista Argentina de Microbiología, 47(1), 1–3. http://doi.org/10.1016/j.ram.2015.01.004; Medeiros, M. A. N., Oliveira, D. C. N., Rodrigues, D. D. P., & Freitas, D. R. C. De. (2011). Prevalence and antimicrobial resistance of Salmonella in chicken carcasses at retail in 15 Brazilian cities. Revista Panamericana de Salud Pública, 30(6), 555–560. http://doi.org/10.1590/S1020-49892011001200010; Mekonen, Y. M., & Melaku, S. K. (2014). Significance of HACCP and SSOP in Food Processing Establishments. World Journal of Dair-iy & Food Sciences, 9(2), 121–126. http://doi.org/10.5829/idosi.wjdfs.2014.9.2.84199; Mercado, M., Avila, J., Rey, M., Montoya, M., Gamboa, A., Carrascal, A. K., & Correa, D. X. (2012). Brotes por Salmonella spp., Staphylococcus aureus y Listeria monocytogenes asociados al consumo de pollo. Revisión sistemática de la literatura. Biomédica, 32(3), 375–385. http://doi.org/10.7705/biomedica.v32i3.697; Ministerio de Salud. (2011). Análisis microbiológico de los alimentos. Red Nacional de Laboratorios Oficiales de Análisis de Alimentos, 1–175. Retrieved from http://www.anmat.gov.ar/renaloa/docs/analisis_mi-crobiologico_de_los_alimentos_vol_i.pdf; Ministerio de Salud (20 de septiembre de 1991). Condiciones para los procesos de obtención, envasado y comercialización de agua potable con destino a consumo humano (Resolucion 12186). Retrieved from https://www.invima.gov.co/index.php?op-tion=com_content&view=article&id=510:resolucion-12186-septi-embre-201991&catid=304:resolucion-1999&Itemid=2135; Ministerio de Salud de Colombia. (18 de enero del 2002). Aplicación del Sistema de Análisis de Peligros y Puntos de control crítico - HACCP en las fábricas de alimentos, (Decreto 60). DO 44686.; Ministerio de Salud y Protección Social (11 de marzo de 2015). (n.d.). Clasificación de los alimentos para consumo humano (Resolucion 0719). Retrieved from https://www.invima.gov.co/resolu-ciones-en-alimentos/resoluciones/alimentos/resolucion-0719-de-2015-pdf/download.html.; Ministerio de Salud y Protección Social (12 de marzo de 2014). Reglamento técnico sobre los requisitos sanitarios que deben cumplir los importadores y exportadores de alimentos (Decreto 539). Retrieved from https://www.invima.gov.co/normatividad/decretos/decretos/alimentos/decreto-539-de-2014-pdf/download.html.; Ministerio de Salud y Protección Social (22 de julio del 2013). Reglamenta el artículo 126 del Decreto-ley 019 de 2012 (Resolución 2674). Retrieved from https://www.invima.gov.co/resoluciones-en-alimentos/resoluciones/alimentos/resolucion-2674-2013-pdf/download.html.; Ministerio de Salud y Protección Social (25 de marzo de 2014). Modifica el artículo 21 del decreto 539 de 2014 (Decreto 590). DO: 49103.; Ministerios de la Protección Social y de Ambiente vivienda y desarrollo territorial (22 de junio de 2007). Vigilancia para la calidad del agua para consumo humano (Resolucion 2115). DO: 46679.; Mizan, M. F. R., Jahid, I. K., & Ha, S. Do. (2015). Microbial biofilms in seafood: A food-hygiene challenge. Food Microbiology, 49, 41–55. http://doi.org/10.1016/j.fm.2015.01.009; Møller, C. O. A., Sant’Ana, A. S., Hansen, S. K. H., Nauta, M. J., Silva, L. P., Alvarenga, V. O., . Hansen, T. B. (2016). Evaluation of a cross con-tamination model describing transfer of Salmonella spp. and Liste-ria monocytogenes during grinding of pork and beef. International Journal of Food Microbiology, 226, 42–52. http://doi.org/10.1016/j.ijfoodmicro.2016.03.016; Monge, C., Chaves, C., & Arias, M. L. (2011). Comparación de la calidad bacteriológica de la lechuga (Lactuca sativa) producida en Costa Rica mediante cultivo tradicional, orgánico o hidropónico. Archivos Latinoamericanos de Nutricion, 61(1), 69–73. Retrieved from http://www.scielo.org.ve/scielo.php?script=sci_arttex-t&pid=S0004-06222011000100009; Nayak, D. N., Savalia, C. V., Kalyani, I. H., Kumar, R., & Kshirsagar, D. P. (2015). Isolation, identification, and characterization of Listeriaspp. from various animal origin foods. Veterinary World, 8(6), 695–701. http://doi.org/10.14202/vetworld.2015.695-701; Nerín, C., Aznar, M., & Carrizo, D. (2016). Food contamination during food process. Trends in Food Science and Technology, 48, 63–68. http://doi.org/10.1016/j.tifs.2015.12.004; Oliveira, J., Cunha, A., Castilho, F., Romalde, J. L., & Pereira, M. J. (2011). Microbial contamination and purification of bivalve shellfish: Cru-cial aspects in monitoring and future perspectives - A mini-review. Food Control, 22(6), 805–816. http://doi.org/10.1016/j.food-cont.2010.11.032; Oyeyemi, O. T., Agbaje, M. O., & Okelue, U. B. (2016). Food-borne human parasitic pathogens associated with household cockroaches and houseflies in Nigeria. Parasite Epidemiology and Control, 1(1), 10–13. http://doi.org/10.1016/j.parepi.2015.10.001; Palomino-Camargo, C., & González-Muñoz, Y. (2014). Molecular techniques for detection and identification of pathogens in food: advantages and limitations. Revista Peruana de Medicina Experimental Y Salud Pública, 31(3), 535–546. Retrieved from http://www.scielosp.org/scie-lo.php?script=sci_arttext&pid=S1726-46342014000300020&ln-g=en&nrm=iso&tlng=es; Pla, M. L., Oltra, S., Esteban, M. D., Andreu, S., & Palop, A. (2015). Com-parison of Primary Models to Predict Microbial Growth by the Plate Count and Absorbance Methods. BioMed Research International, 2015. http://doi.org/10.1155/2015/365025; Rajkovic, A., Smigic, N., & Devlieghere, F. (2010). Contemporary strategies in combating microbial contamination in food chain. International Journal of Food Microbiology, 141(SUPPL.), S29–S42. http://doi.org/10.1016/j.ijfoodmicro.2009.12.019; Ray, B., & Bhunia, A. K. (2010). Fundamentos de Microbiología de los Alimentos (4a Edición). México D.F., México: Mc Graw Hill.; Sánchez, J., Correa, M., & Castañeda-Sandoval, L. M. (2016). Bacillus cereus un patógeno importante en el control microbiológico de los alimentos. Revista Facultad Nacional de Salud Pública, 34(2). http://doi.org/10.17533/udea.rfnsp.v34n2a12; Sapabguy, C., & Yasurin, P. (2015). Natural antibacterial activity of Thai Red Curry paste in Coconut Milk based Curry; Kang-Kati , model on Salmonella sp . and Listeria monocytogenes, 12(5), 473–480. http://doi.org/doi:10.14456/WJST.2015.82; Sevenier, V., Delannoy, S., André, S., Fach, P., & Remize, F. (2012). Prev-alence of Clostridium botulinum and thermophilic heat-resistant spores in raw carrots and green beans used in French canning industry. International Journal of Food Microbiology, 155(3), 263–268. http://doi.org/10.1016/j.ijfoodmicro.2012.02.009; Shale, K., Mukamugema, J., Lues, R., J., & Venter, P. (2014). Possible mi-crobial and biochemical contaminants of an indigenous banana beer “Urwagwa”: A mini review. African Journal of Food Science, 8(7), 376–389. http://doi.org/10.5897/AJFS12.134; Soto-Varela, Z., Pérez-Lavalle, L., & Estrada-Alvarado, D. (2016). Bacterias causantes de enfermedades transmitidas por alimentos : una mirada en colombia Bacteria causing of foodborne diseases : an overview at colombia, 32(1), 105–122. Retrieved from www.redalyc.org/pdf/817/81745985010.pdf; Tirado, M. C., Clarke, R., Jaykus, L. A., McQuatters-Gollop, A., & Frank, J. M. (2010). Climate change and food safety: A review. Food Re-search International, 43(7), 1745–1765. http://doi.org/10.1016/j.foodres.2010.07.003; Van Bossuyt, M., Van Hoeck, E., Vanhaecke, T., Rogiers, V., & Mertens, B. (2016). Printed paper and board food contact materials as a potential source of food contamination. Regulatory Toxicology and Pharmacology, 81(1935), 10–19. http://doi.org/10.1016/j.yrtph.2016.06.025; Van Doren, J. M., Neil, K. P., Parish, M., Gieraltowski, L., Gould, L. H., & Gombas, K. L. (2013). Foodborne illness outbreaks from microbi-al contaminants in spices, 1973-2010. Food Microbiology, 36(2), 456–464. http://doi.org/10.1016/j.fm.2013.04.014; Venturini, M. E., Reyes, J. E., Rivera, C. S., Oria, R., & Blanco, D. (2011). Microbiological quality and safety of fresh cultivated and wild mushrooms commercialized in Spain. Food Microbiology, 28(8), 1492–1498. http://doi.org/10.1016/j.fm.2011.08.007; Webb, M., & Morancie, A. (2015). Food safety knowledge of foodservice workers at a university campus by education level, experience, and food safety training. Food Control, 50, 259–264. http://doi.or-g/10.1016/j.foodcont.2014.09.002; Winkelstróter, L. K., Teixeira, F. B. dos R., Silva, E. P., Alves, V. F., & De Martinis, E. C. P. (2014). Unraveling Microbial Biofilms of Importance for Food Microbiology. Microbial Ecology, 68(1), 35–46. http://doi.org/10.1007/s00248-013-0347-4; Wu, X., & Su, Y. C. (2014). Growth of Staphylococcus aureus and entero-toxin production in pre-cooked tuna meat. Food Control, 42, 63–70. http://doi.org/10.1016/j.foodcont.2014.01.039; Yoon, Y., Lee, S., & Choi, K.-H. (2016). Microbial benefits and risks of raw milk cheese. Food Control, 63, 201–215. http://doi.org/10.1016/j.foodcont.2015.11.013; Zhang, Y., Tan, G., & Qu, W. (2015). Application of Hazard Analysis and Critical Control Point in quality of mineral water for athletes, 7(3), 136–143. Retrieved from chimie-biologie.ubm.ro/carpathian_jour-nal/Vol_7(3)_2015.pdf; https://repositorio.cecar.edu.co/handle/cecar/2807