يعرض 1 - 20 نتائج من 139 نتيجة بحث عن '"Chay‐Canul, Alfonso Juventino"', وقت الاستعلام: 0.52s تنقيح النتائج
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    المصدر: Revista Colombiana de Ciencias Pecuarias; Vol. 37 No. 4 (2024): October - December 2024; 243-250 ; Revista Colombiana de Ciencias Pecuarias; Vol. 37 Núm. 4 (2024): Octubre - Diciembre 2024; 243-250 ; Revista Colombiana de Ciencias Pecuarias; v. 37 n. 4 (2024): Outubro - Dezembro 2024; 243-250 ; 2256-2958

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    Relation: https://centaur.reading.ac.uk/112563/1/1-s2.0-S2405844023042792-main.pdf; Olvera-Aguirre, G., Piñeiro-Vázquez, Á. T., Sanginés-García, J. R., Sánchez Zárate, A., Ochoa-Flores, A. A., Segura-Campos, M. R., Vargas-Bello-Pérez, E. orcid:0000-0001-7105-5752 and Chay-Canul, A. J. (2023) Using plant-based compounds as preservatives for meat products: a review. Heliyon, 9 (6). e17071. ISSN 2405-8440 doi: https://doi.org/10.1016/j.heliyon.2023.e17071

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    Alternate Title: Similitud de los parámetros de longissimus thoracis y el espesor de la grasa medidos mediante ecografía y análisis digital de imágenes. (Spanish)

    المصدر: Ecosistemas y Recursos Agropecuarios; sep-dic2024, Vol. 11 Issue 3, p1-7, 7p

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    Relation: Boyko OO, Gugosyan YA, Shendryk LI, Brygadyrenko VV. Intraspecific morphological variation in free-living stages of Strongyloides papillosus (Nematoda, Strongyloididae) parasitizing various mammal species. Vestnik Zoologii. 2019; 53(4):313-324. https://doi.org/10.2478/vzoo-2019-0030; Thamsborg SM, Ketzis J, Horii Y, Matthews JB. Strongyloides spp. infections of veterinary importance. Parasitol. 2017; 144:274-284. https://doi.org/10.1017/S0031182016001116; Taira N, Ura S. Sudden death in calves associated with Strongyloides papillosus infection. Vet Parasitol. 1991; 39:313-319. https://doi.org/10.1016/0304-4017(91)90048-Z; Ojeda-Robertos NF, Torres-Chablé OM, Peralta-Torres JA, Luna-Palomera C, Aguilar-Cabrales A, Chay-Canul AJ, et al. Study of gastrointestinal parasites in water-buffalo (Bubalus bubalis) reared under Mexican humid tropical conditions. Trop Anim Health Prod. 2017; 49:613-618. https://doi.org/10.1007/s11250-017-1237-4; Papadopoulos E. Anthelmintic resistance in sheep nematodes. Small Rumin Res. 2008; 76:99–103. https://doi.org/10.1016/j.smallrumres.2007.12.012; Herrera-Manzanilla FA, Ojeda-Robertos NF, González-Garduño R, Cámara-Sarmiento R, Torres-Acosta JFJ. Gastrointestinal nematode populations with multiple anthelmintic resistance in sheep farms from the hot humid tropics of México. Vet Parasitol Reg Stud Reports. 2017; 9,:29-33. https://doi.org/10.1016/j.vprsr.2017.04.007; INEGI. Prontuario de información geográfica municipal de los Estados Unidos Mexicanos, Tabasco, Centro. [En línea]. Instituto Nacional de Estadística Geografía e informática: México; 2020. https://www.inegi.org.mx/app/biblioteca/ficha.html?upc=702825293161; Coles GC, Jackson F, Pomroy WE, Prichard RK, Von Samson-Himmelstjerna G. The detection of anthelmintic resistance in nematodes of veterinary importance. Vet Parasitol. 2006; 136:167-185. https://doi.org/10.1016/j.vetpar.2005.11.019; Kaplan RM. Biology, epidemiology, diagnosis, and management of anthelmintic resistance in gastrointestinal nematodes of livestock. Vet Clin North Am Food Anim Pract. 2020; 36:17-30. https://doi.org/10.1016/j.cvfa.2019.12.001; Sangster NC, Cowling A, Woodgate RG. Ten events that defined anthelmintic resistance research. Trends Parasitol. 2018; 34:553-563. https://doi.org/10.1016/j.pt.2018.05.001; Kotze AC, Prichard RK. Anthelmintic resistance in Haemonchus contortus: history, mechanisms and diagnosis. Adv Parasitol. 2016; 93:397-428. https://doi.org/10.1016/bs.apar.2016.02.012; Lespine A, Chartier C, Hoste H, Alvinerie M. Endectocides in goats: Pharmacology, efficacy and use conditions in the context of anthelmintics resistance. Small Rumin Res. 2012; 103:10-17. https://doi.org/10.1016/j.smallrumres.2011.10.013; Bartley DJ, Devin L, Nath M, Morrison AA. Selection and characterisation of monepantel resistance in Teladorsagia circumcincta isolates. Int J Parasitol Drug Drug Res. 2015; 5:69-76. https://doi.org/10.1016/j.ijpddr.2015.05.001; Samal AK, Patra PB, Maharana BR. Simultaneous infestation of a Buffalo calf with Ascaris and Strogyloides: A case study. Vet World. 2011; 4:322-323. http://www.veterinaryworld.org/Vol.4/July%20-%202011/7.html; Zajac AM, Garza J. Biology, epidemiology, and control of gastrointestinal nematodes of small ruminants. Vet Clin North Am Food Anim Pract. 2020; 36(1):73-87. https://doi.org/10.1016/j.cvfa.2019.12.005; Mahieu M, Arquet R, Marie-Magdeleine C. Effectiveness of several anthelmintics to control a Strongyloides sp. outbreak in Creole-de-Guadeloupe male kids aged 7 months. Vet Parasitol Reg Stud Rep. 2018; 13:224-227. https://doi.org/10.1016/j.vprsr.2018.07.006; Ali Q, Rashid I, Shabbir MZ, Shahzad K, Ashraf K, Sargison ND, et al. Emergence and the spread of the F200Y benzimidazole resistance mutation in Haemonchus contortus and Haemonchus placei from buffalo and cattle. Vet Parasitol. 2019; 265:48-54. https://doi.org/10.1016/j.vetpar.2018.12.001; Falzon LC, O’Neill TJ, Menzies PI, Peregrine AS, Jones-Bitton A, VanLeeuwenn J, et al. A systematic review and meta-analysis of factors associated with anthelmintic resistance in sheep. Prev Vet Med. 2014; 117:388–402. https://doi.org/10.1016/j.prevetmed.2014.07.003; Abbott KA, Lewis CJ. Current approaches to the management of ovine footrot. Vet J. 2005; 169:28–41. https://doi.org/10.1016/j.tvjl.2004.05.008; Hodgkinson, JE, Kaplan, RM, Kenyon, F, Morgan, ER, Park, AW, Paterson, et al. Refugia and anthelmintic resistance: concepts and challenges. Int J Parasitol: Drugs Drug Res. 2019; 10:51-57. https://doi.org/10.1016/j.ijpddr.2019.05.001; https://revistamvz.unicordoba.edu.co/article/download/2227/4043; https://revistamvz.unicordoba.edu.co/article/download/2227/4044; https://revistamvz.unicordoba.edu.co/article/download/2227/4045; https://revistamvz.unicordoba.edu.co/article/download/2227/4046; https://revistamvz.unicordoba.edu.co/article/download/2227/4041; Núm. 2 , Año 2022 : Revista MVZ Córdoba Volumen 27(2) Mayo-Agosto 2022; e2227; 27; Revista MVZ Córdoba; https://repositorio.unicordoba.edu.co/handle/ucordoba/6202; https://doi.org/10.21897/rmvz.2227

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    المصدر: Journal MVZ Cordoba; Vol. 27 No. s (2022): Vol. 27 Supl (2022): Revista MVZ Córdoba Volumen 27(Supl) 2022; e2933 ; Revista MVZ Córdoba; Vol. 27 Núm. s (2022): Vol. 27 Supl (2022): Revista MVZ Córdoba Volumen 27(Supl) 2022; e2933 ; 1909-0544 ; 0122-0268 ; 10.21897/rmvz.v27.ns.2022

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    Relation: https://revistamvz.unicordoba.edu.co/article/view/2933/4695; https://revistamvz.unicordoba.edu.co/article/view/2933/4696; https://revistamvz.unicordoba.edu.co/article/view/2933/4697; https://revistamvz.unicordoba.edu.co/article/view/2933/4698; https://revistamvz.unicordoba.edu.co/article/view/2933/4699; https://revistamvz.unicordoba.edu.co/article/view/2933/4795; 1. Santos VA, Silvestre AM, Azevedo JM, Silva SR. Estimation of carcase composition of goat kids from joint dissection and conformation measurements. Ital J Ani Sci. 2017; 16(4):659-665. https://doi.org/10.1080/1828051X.2017.1321472; 2. García OIdel C, Oliva HJ, Osorio AMM, Torres HG, Hinojosa CJA, González GR. Influencia materna en el crecimiento predestete y características de la canal de corderos de pelo. Ecosis Recur Agropec. 2017; 4(10):51-63. https://doi.org/10.19136/era.a4n10.818; 3. Bautista DE, Salazar CER, Chay CAJ, García HRA, Piñeiro VAT, Magaña MJG, Tedeschi LO, Cruz HA, Gómez VA. Determination of carcass traits in Pelibuey ewes using biometric measurements. Small Ruminant Res. 2017; 147:115–119. https://doi.org/10.1016/j.smallrumres.2016.12.037; 4. Bautista DE, Mezo SJA, Herrera CJ, Cruz HA, Gómez VA, Tedeschi LO, Lee RHA, Vargas BPE, Chay CAJ. Prediction of carcass traits of hair sheep lambs using body measurements. Animals. 2020; 10(8):1276. https://doi.org/10.3390/ani10081276; 5. Aguilar HE, Chay CAJ, Gómez VA, Magaña MJG, Ríos RFG, Cruz HA. Relationship of ultrasound measurements and carcass traits in Pelibuey ewes. J Anim Plant Sci. 2016; 26(2):325-330. https://www.thejaps.org.pk/docs/v-26-02/04.pdf; 6. Chay CAJ, Pineda RJJ, Olivares PJ, Ríos RFG, García HRA, Piñeiro VAT, Casanova LF. Prediction of carcass characteristics of discarded Pelibuey ewes by ultrasound measurements. Rev Mex Cienc Pecu. 2019; 10(2):473-481. https://doi.org/10.22319/rmcp.v10i2.4551; 7. Morales MMA, Arce RC, Mendoza TMM, Luna PC, Ramírez BMA, Piñeiro VAT, Vicente PR, Tedeschi LO, Chay CAJ. Developing equations for predicting internal body fat in Pelibuey sheep using ultrasound measurements. Small Ruminant Res. 2020; 183:106031. https://doi.org/10.1016/j.smallrumres.2019.106031; 8. Díaz MT, Cañeque V, Lauzurica S, Velasco S, de Huidobro FR, Pérez C. Prediction of suckling lamb carcass composition from objective and subjective carcass measurements. Meat Sci. 2004; 66(4):895-902. https://doi.org/10.1016/j.meatsci.2003.08.013; 9. Lambe NR, Navajas EA, Fisher AV, Simm G, Roehe R, Bünger L. Prediction of lamb meat eating quality in two divergent breeds using various live animal and carcass measurements. Meat Sci. 2009; 83(3):366-375. https://doi.org/10.1016/j.meatsci.2009.06.007; 11. Almeida A. Barbados Blackbelly: the Caribbean ovine genetic resource. Trop Anim Health Prod. 2017; 2:239-250. https://doi.org/10.1007/s11250-017-1475-5; 12. Escalante CS, Vázquez JS, López DSK, Arcos ADN, Arbez ATA, Piñeiro VAT, Muñoz BAL, Vargas BPE, Chay CAJ. Using the 9th-11th rib section to predict carcass tissue composition in Blackbelly sheep. Ital J Anim Sci. 2022; 21(1):161-167. https://doi.org/10.1080/1828051X.2021.2002731; }13. Sabbioni A, Beretti V, Ablondi M, Righi F, Superchi P. Allometric coefficients for carcass and non-carcass components in a local meat-type sheep breed. Small Ruminant Res. 2018; 159:69-74. https://doi.org/10.1016/j.smallrumres.2017.11.005; 14. Ruiz de Huidobro F, Cañeque V, Ortega E, Velasco S. Morfología de la canal ovina. En: Cañeque V, Sañudo C editores. Metodología para el estudio de la calidad de la canal y de la carne en rumiantes. Madrid, España: Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria. Ministerio de Ciencia y Tecnología; 2000.; 15. Carrasco S, Ripoll G, Sanz A, Álvarez-Rodríguez J, Panea B, Revilla R, Joy M. Effect of feeding system on growth and carcass characteristics of Churra Tensina light lambs. Livest Sci. 2009; 121(1):56-63. https://doi.org/10.1016/j.livsci.2008.05.017; 16. SAS 9.3 Software. Institute Inc., Cary, North Carolina, USA. 2010.; 17. Fernandes MHMR, Resende KT, Tedeschi LO, Fernandes JS, Teixeira IAMA, Carstens GE, Berchielli TT. Predicting the chemical composition of the body and the carcass of 3/4Boer × 1/4Saanen kids using body components. Small Ruminant Res. 2008; 75:90–98. https://doi.org/10.1016/j.smallrumres.2007.09.005; 18. Barcelos SS, Vargas JAC, Mezzomo R, Gionbelli MP, Gomes DI, Oliveira LRS, Luz JB, Maciel DL, Alves KS. Predicting the chemical composition of the body and the carcass of hair sheep using body parts and carcass measurements. Animals. 2021; 15(3):100139. https://doi.org/10.1016/j.animal.2020.100139; 19. Marcondes MI, Tedeschi LO, Valadares Filho SC, Costa Silva LF, Silva Da Lopes. Using growth and body composition to determine weight at maturity in Nellore cattle. Anim Prod Sci. 2015; 56:1121–1129. http://dx.doi.org/10.1071/AN14750; 20. Almeida AK, Resende KT, Tedeschi LO, Fernandes MH, Regadas Filho JG, Teixeira IA. Using body composition to determine weight at maturity of male and female Saanen goats. J Anim Sci. 2016; 94:2564–2571. http://dx.doi.org/10.2527/jas2015-0060; https://revistamvz.unicordoba.edu.co/article/view/2933

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    المصدر: Journal MVZ Cordoba; Vol. 27 No. 2 (2022): Revista MVZ Córdoba Volumen 27(2) Mayo-Agosto 2022; e2227 ; Revista MVZ Córdoba; Vol. 27 Núm. 2 (2022): Revista MVZ Córdoba Volumen 27(2) Mayo-Agosto 2022; e2227 ; 1909-0544 ; 0122-0268 ; 10.21897/rmvz.v27.n2.2022

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    Relation: https://revistamvz.unicordoba.edu.co/article/view/2227/4043; https://revistamvz.unicordoba.edu.co/article/view/2227/4044; https://revistamvz.unicordoba.edu.co/article/view/2227/4663; https://revistamvz.unicordoba.edu.co/article/view/2227/4664; https://revistamvz.unicordoba.edu.co/article/view/2227/4665; https://revistamvz.unicordoba.edu.co/article/view/2227/4666; https://revistamvz.unicordoba.edu.co/article/view/2227/4045; https://revistamvz.unicordoba.edu.co/article/view/2227/4046; https://revistamvz.unicordoba.edu.co/article/view/2227/4041; 1. Boyko OO, Gugosyan YA, Shendryk LI, Brygadyrenko VV. Intraspecific morphological variation in free-living stages of Strongyloides papillosus (Nematoda, Strongyloididae) parasitizing various mammal species. Vestnik Zoologii. 2019; 53(4):313-324. https://doi.org/10.2478/vzoo-2019-0030; 2. Thamsborg SM, Ketzis J, Horii Y, Matthews JB. Strongyloides spp. infections of veterinary importance. Parasitol. 2017; 144:274-284. https://doi.org/10.1017/S0031182016001116; 3. Taira N, Ura S. Sudden death in calves associated with Strongyloides papillosus infection. Vet Parasitol. 1991; 39:313-319. https://doi.org/10.1016/0304-4017(91)90048-Z; 4. Ojeda-Robertos NF, Torres-Chablé OM, Peralta-Torres JA, Luna-Palomera C, Aguilar-Cabrales A, Chay-Canul AJ, et al. Study of gastrointestinal parasites in water-buffalo (Bubalus bubalis) reared under Mexican humid tropical conditions. Trop Anim Health Prod. 2017; 49:613-618. https://doi.org/10.1007/s11250-017-1237-4; 5. Papadopoulos E. Anthelmintic resistance in sheep nematodes. Small Rumin Res. 2008; 76:99–103. https://doi.org/10.1016/j.smallrumres.2007.12.012; 6. Herrera-Manzanilla FA, Ojeda-Robertos NF, González-Garduño R, Cámara-Sarmiento R, Torres-Acosta JFJ. Gastrointestinal nematode populations with multiple anthelmintic resistance in sheep farms from the hot humid tropics of México. Vet Parasitol Reg Stud Reports. 2017; 9,:29-33. https://doi.org/10.1016/j.vprsr.2017.04.007; 7. INEGI. Prontuario de información geográfica municipal de los Estados Unidos Mexicanos, Tabasco, Centro. [En línea]. Instituto Nacional de Estadística Geografía e informática: México; 2020. https://www.inegi.org.mx/app/biblioteca/ficha.html?upc=702825293161; 8. Coles GC, Jackson F, Pomroy WE, Prichard RK, Von Samson-Himmelstjerna G. The detection of anthelmintic resistance in nematodes of veterinary importance. Vet Parasitol. 2006; 136:167-185. https://doi.org/10.1016/j.vetpar.2005.11.019; 9. Kaplan RM. Biology, epidemiology, diagnosis, and management of anthelmintic resistance in gastrointestinal nematodes of livestock. Vet Clin North Am Food Anim Pract. 2020; 36:17-30. https://doi.org/10.1016/j.cvfa.2019.12.001; 11. Kotze AC, Prichard RK. Anthelmintic resistance in Haemonchus contortus: history, mechanisms and diagnosis. Adv Parasitol. 2016; 93:397-428. https://doi.org/10.1016/bs.apar.2016.02.012; 12. Lespine A, Chartier C, Hoste H, Alvinerie M. Endectocides in goats: Pharmacology, efficacy and use conditions in the context of anthelmintics resistance. Small Rumin Res. 2012; 103:10-17. https://doi.org/10.1016/j.smallrumres.2011.10.013; 13. Bartley DJ, Devin L, Nath M, Morrison AA. Selection and characterisation of monepantel resistance in Teladorsagia circumcincta isolates. Int J Parasitol Drug Drug Res. 2015; 5:69-76. https://doi.org/10.1016/j.ijpddr.2015.05.001; 14. Samal AK, Patra PB, Maharana BR. Simultaneous infestation of a Buffalo calf with Ascaris and Strogyloides: A case study. Vet World. 2011; 4:322-323. http://www.veterinaryworld.org/Vol.4/July%20-%202011/7.html; 15. Zajac AM, Garza J. Biology, epidemiology, and control of gastrointestinal nematodes of small ruminants. Vet Clin North Am Food Anim Pract. 2020; 36(1):73-87. https://doi.org/10.1016/j.cvfa.2019.12.005; 16. Mahieu M, Arquet R, Marie-Magdeleine C. Effectiveness of several anthelmintics to control a Strongyloides sp. outbreak in Creole-de-Guadeloupe male kids aged 7 months. Vet Parasitol Reg Stud Rep. 2018; 13:224-227. https://doi.org/10.1016/j.vprsr.2018.07.006; 17. Ali Q, Rashid I, Shabbir MZ, Shahzad K, Ashraf K, Sargison ND, et al. Emergence and the spread of the F200Y benzimidazole resistance mutation in Haemonchus contortus and Haemonchus placei from buffalo and cattle. Vet Parasitol. 2019; 265:48-54. https://doi.org/10.1016/j.vetpar.2018.12.001; 18. Falzon LC, O’Neill TJ, Menzies PI, Peregrine AS, Jones-Bitton A, VanLeeuwenn J, et al. A systematic review and meta-analysis of factors associated with anthelmintic resistance in sheep. Prev Vet Med. 2014; 117:388–402. https://doi.org/10.1016/j.prevetmed.2014.07.003; 19. Abbott KA, Lewis CJ. Current approaches to the management of ovine footrot. Vet J. 2005; 169:28–41. https://doi.org/10.1016/j.tvjl.2004.05.008; 20. Hodgkinson, JE, Kaplan, RM, Kenyon, F, Morgan, ER, Park, AW, Paterson, et al. Refugia and anthelmintic resistance: concepts and challenges. Int J Parasitol: Drugs Drug Res. 2019; 10:51-57. https://doi.org/10.1016/j.ijpddr.2019.05.001; https://revistamvz.unicordoba.edu.co/article/view/2227

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    المصدر: Revista Colombiana de Ciencias Pecuarias; Vol. 36 No. 2 (2023): April - June 2023; 89-97 ; Revista Colombiana de Ciencias Pecuarias; Vol. 36 Núm. 2 (2023): Abril - junio 2023; 89-97 ; Revista Colombiana de Ciencias Pecuarias; v. 36 n. 2 (2023): Abril - junho 2023; 89-97 ; 2256-2958

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