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  1. 541

    Evaluación de carbono en ecosistemas terrestres en Tizimín, Yucatán, México por García García, Dora Alicia

    Publicado 2019
    “…That the biomass to carbon conversion factor is very close to the value of 0.50; the biomass content accumulated in the plantation is 45,399 tons, the carbon content is 24,042.77 tons and the carbon dioxide is 88,241.15 tons.…”
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  2. 542

    Evaluación de la actividad antitumoral de células madre mesenquimales que sobreexpresan TRAIL e IFNβ en un modelo murino de linfoma. por González Villarreal, Carlos Alberto

    Publicado 2018
    “…The treatment of solid lymphoma with a combination of CMM-MO transduced with TRAILs and CMM-MO transduced with IFNβ is very promising to treat human lymphomas.…”
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  3. 543

    Evaluación de la actividad antitumoral de células madre mesenquimales que sobreexpresan TRAIL e IFNβ en un modelo murino de linfoma. por González Villarreal, Carlos Alberto

    Publicado 2018
    “…The treatment of solid lymphoma with a combination of CMM-MO transduced with TRAILs and CMM-MO transduced with IFNβ is very promising to treat human lymphomas.…”
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  4. 544

    Una crítica a las políticas capitalistas que obstaculizan la documentación y comunicación científica deportiva pública por Muela Meza, Zapopan Martín, Torres Reyes, José Antonio

    Publicado 2013
    “…Results: These were the major capitalistic policies found in general and in sports in particular: 1) the intervention of capitalistic corporations and bourgeois States within the public universities, and in the public affairs is transforming education, science, and information-communication into an appendix without criticism in favor of capitalistic corporations (Dilevko, 2009; Moles Plaza, 2006; Muela Meza, 2005; Bakan, 2004; Marquand, 2004; Verzola, 2004; González Barbone, 2002; Fox 1983); 2) the buying-selling of information-commmunication financed with public money affects the scant budgets of public universities, and the salaries of scientific, information-communication workers communities (González Barbone, 2002; Webster, 2002; Schiller, 1996; Harnad, 1995; Habermas, 1981); 3) the contracts between capitalistic governments, and corporations of the information recorded in documents such Thomson Reuters (and their indexes ISI, Journal Citations Reports (JCR), Web of Science, Web of Knowledge, etc.), as the the only standards to assess the worldwide science show evidence of the corruption between them (Herrán & Villena, 20012; Dilevko, 2009; González Barbone, 2002); it also shows their anti-scientific bias, since, for instance in Mexico between 1997-2006 the JCR, WOS, and WOK only indexed less than 15% of all the scientific information-communication (Torres Reyes, 2010), and these trends are similar throughout the world (Herrán & Villena, 2012); even the very same creator of the first scientific citation index (SCI) in 1995 has warned recently that to evaluate science only employing impact factor or JCR was limited and evend biased (Garfield, 2005); 4) while the largest percentage of worldwide innformation-communicationn (more than 85% only in Mexico, Torres Reyes, 2010) it is published thorugh Open Access journals, on the contrary, capitalistic corporations and States, and public institutions reviewers and financers of science (e.g. …”
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  5. 545

    Desarrollo de algoritmos matemáticos para detectar la presencia de bacterias, hongos y plagas, utilizando sistemas de procesamiento de imágenes. por Grajeda González, Uziel Francisco

    Publicado 2018
    “…Due to the rapid spread and reproduction of the pest in different areas of Mexico, it is essential to use technologies such as the acquisition and processing of images, as well as the vision machine to assist monitoring and rapid counting process. It is also very important to consider in future research the release of an adequate amount of beneficial insects, such as Coccinellidae, because they can control the yellow aphid population in sorghum culture, as well as the use of hyperspectral image processing.…”
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  6. 546

    A global-scale screening of non-native aquatic organisms to identify potentially invasive species under current and future climate conditions por Vilizzi, Lorenzo, Copp, Gordon H., Hill, Jeffrey E., Adamovich, Boris, Aislabie, Luke, Akin, Daniel, Al Faisal, Abbas J., Almeida, David, Azmai, M.N. Amal, Bakiu, Rigers, Bellati, Adriana, Bernier, Renée, Bies, Jason M., Bilge, Gökçen, Branco, Paulo, Bui, Thuyet D., Canning Clode, João, Cardoso Ramos, Henrique Anatole, Castellanos Galindo, Gustavo A., Castro, Nuno, Chaichana, Ratcha, Chainho, Paula, Chan, Joleen, Cunico, Almir M., Curd, Amelia, Dangchana, Punyanuch, Dashinov, Dimitriy, Davison, Phil I., De Camargo, Mariele P., Dodd, Jennifer A., Durland Donahou, Allison L., Edsman, Lennart, Ekmekçi, F. Güler, Elphinstone Davis, Jessica, Erős, Tibor, Evangelista, Charlotte, Fenwick, Gemma, Ferincz, Árpád, Ferreira, Teresa, Feunteun, Eric, Filiz, Halit, Forneck, Sandra C., Gajduchenko, Helen S., Gama Monteiro, João, Gestoso, Ignacio, Giannetto, Daniela, Gilles, Allan S., Gizzi, Francesca, Glamuzina, Branko, Glamuzina, Luka, Goldsmit, Jesica, Gollasch, Stephan, Goulletquer, Philippe, Grabowska, Joanna, Harmer, Rogan, Haubrock, Phillip J., He, Dekui, Hean, Jeffrey W., Herczeg, Gábor, Howland, Kimberly L., Ilhan, Ali, Interesova, Elena, Jakubčinová, Katarína, Jelmert, Anders, Johnsen, Stein I., Kakareko, Tomasz, Kanongdate, Kamalaporn, Killi, Nurçin, Kim, Jeong-Eun, Kırankaya, Şerife Gülsün, Kňazovická, Dominika, Kopecký, Oldřich, Kostov, Vasil, Koutsikos, Nicholas, Kozic, Sebastian, Kuljanishvili, Tatia, Kumar, Biju, Kumar, Lohith, Kurita, Yoshihisa, Kurtul, Irmak, Lazzaro, Lorenzo, Lee, Laura, Lehtiniemi, Maiju, Leonardi, Giovanni, Leuven, Rob S.E.W., Li, Shan, Lipinskaya, Tatsiana, Liu, Fei, Lloyd, Lance, Lorenzoni, Massimo, Luna, Sergio Alberto, Lyons, Timothy J., Magellan, Kit, Malmstrøm, Martin, Marchini, Agnese, Marr, Sean M., Masson, Gérard, Masson, Laurence, McKenzie, Cynthia H., Memedemin, Daniyar, Mendoza, Roberto, Minchin, Dan, Miossec, Laurence, Moghaddas, Seyed Daryoush, Moshobane, Moleseng C., Mumladze, Levan, Naddafi, Rahmat, Najafi Majd, Elnaz, Năstase, Aurel, Năvodaru, Ion, Neal, J. Wesley, Nienhuis, Sarah, Nimtim, Matura, Nolan, Emma T., Occhipinti Ambrogi, Anna, Ojaveer, Henn, Olenin, Sergej, Olsson, Karin, Onikura, Norio, O'Shaughnessy, Kathryn, Paganelli, Daniele, Parretti, Paola, Patoka, Jiří, Pavia, Richard Thomas B., Pellitteri Rosa, Daniele, Pelletier Rousseau, Michèle, Peralta, Elfritzson M., Perdikaris, Costas, Pietraszewski, Dariusz, Piria, Marina, Pitois, Sophie, Pompei, Laura, Poulet, Nicolas, Preda, Cristina, Puntila Dodd, Riikka, Qashqaei, Ali T., Radočaj, Tena, Rahmani, Hossein, Raj, Smrithy, Reeves, David, Ristovska, Milica, Rizevsky, Viktor, Robertson, D. Ross, Robertson, Peter, Ruykys, Laura, Saba, Abdulwakil O., Santos, José M., Sarı, Hasan M., Segurado, Pedro, Semenchenko, Vitaliy, Senanan, Wansuk, Simard, Nathalie, Simonović, Predrag, Skóra, Michał E., Slovák Švolíková, Kristína, Smeti, Evangelia, Smídová, Tereza, Spelić, Ivan, Srėbalienė, Greta, Stasolla, Gianluca, Stebbing, Paul, Stevove, Barbora, Suresh, Vettath R., Szajbert, Bettina, Ta, Kieu Anh T., Tarkan, Ali Serhan, Tempesti, Jonathan, Therriault, Thomas W., Tidbury, Hannah J., Top Karakuş, Nildeniz, Tricarico, Elena, Troca, Débora F.A., Tsiamis, Konstantinos, Tuckett, Quenton M., Tutman, Pero, Uyan, Umut, Uzunova, Eliza, Vardakas, Leonidas, Velle, Gaute, Verreycken, Hugo, Vintsek, Lizaveta, Wei, Hui, Weiperth, András, Weyl, Olaf L.F., Winter, Emily R., Włodarczyk, Radosław, Wood, Louisa E., Yang, Ruibin, Yapıcı, Sercan, Yeo, Shayne S.B., Yoğurtçuoğlu, Baran, Yunnie, Anna L.E., Zhu, Yunjie, Zięba, Grzegorz, Zitňanová, Kristína, Clarke, Stacey

    Publicado 2021
    “…In total, 33 species were identified as posing a ‘very high risk’ of being or becoming invasive, and the scores of several of these species under current climate increased under future climate conditions, primarily due to their wide thermal tolerances. …”
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  7. 547

    Desarrollo de algoritmos matemáticos para detectar la presencia de bacterias, hongos y plagas, utilizando sistemas de procesamiento de imágenes. por Grajeda González, Uziel Francisco

    Publicado 2018
    “…Due to the rapid spread and reproduction of the pest in different areas of Mexico, it is essential to use technologies such as the acquisition and processing of images, as well as the vision machine to assist monitoring and rapid counting process. It is also very important to consider in future research the release of an adequate amount of beneficial insects, such as Coccinellidae, because they can control the yellow aphid population in sorghum culture, as well as the use of hyperspectral image processing.…”
    Enlace del recurso
    Tesis
  8. 548

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