Bibliometric Analysis of Feed Additives and Their Effects on Meat Quality in Broiler Production
DOI:
https://doi.org/10.24925/turjaf.v14i7.1812-1826.8614Keywords:
broyler, Bibliometric analysis, Animal feeding, Dietary supplementation, et kalitesiAbstract
The aim of this study was to reveal the effects of feed additives used in broiler production on meat quality over the last two decades. Within the scope of the research, studies published between 2004 and 2024 addressing the relationship between feed additives and meat quality were evaluated using bibliometric analysis. In this context, the Scopus database was searched and VOSviewer software was utilized during the analysis process. The literature search was conducted using the keywords “broiler,” “feed,” “supplements,” and “meat quality,” and a total of 536 documents were included in the analysis. Biblioshiny and Excel software packages were used for data analysis. According to the annual evaluation based on keywords, the highest number of publications was recorded in 2012 with 13 articles. Citation analysis indicated that 2007 had the highest citation intensity rate at 104.67%. Examination of the country distribution revealed that China produced the highest number of publications in the field of broiler nutrition and meat quality. Kim I.H. was identified as the most productive author. In the journal-based evaluation, Poultry Science ranked first with 156 articles published between 2004 and 2014, followed by British Poultry Science with 46 articles and Tropical Animal Health and Production with 18 articles. Keyword analysis showed that “meat quality” was the most frequently studied concept. Nanjing Agricultural University was identified as the institution with the highest number of publications, while China was the country with the highest citation rate and the strongest international collaboration network. Collaboration networks particularly highlighted joint studies between China and Saudi Arabia. The most frequently used terms in the studies were “diet,” “chickens,” “animal feed,” “dietary supplement,” and “meat.” This study was conducted to reveal the changes and developments over the years regarding the effects of feed additives on meat quality in broiler production and to identify the types and usage trends of additives affecting quality. The findings are expected to provide guidance for future research on feed additives and innovative approaches applicable to poultry production.
References
Adaszyńska-Skwirzyńska, Michalina, and Danuta Szczerbińska. "Use of essential oils in broiler chicken production – a review" Annals of Animal Science, vol. 17, no. 2, Sciendo, 2017, pp. 317-335. https://doi.org/10.1515/aoas-2016-0046
Adnan, A., Hastuti, C. O. I., Hadiarto, A., Lestari, I. P., Haryati, Y., Ariningsih, E., ... & Wijaya, A. (2024). Evolving Paradigms in Sorghum Research: A Bibliometric and Content Analysis of Global Trends and Future Directions. Journal homepage: http://iieta. Org/journals/ijdne, 19(3), 887-898.
Ay, F. A., Demir, G., & Karakaya, A. (2024). Mapping Futures Literacy: Bibliometric Analysis and Future Research Directions. Journal of Humanities and Tourism Research, 14(3), 414-437.
Banday, M. T., Wani, M. A., Alqhtani, H. A., Bin-Jumah, M., Rudayni, H. A., Allam, A. A., ... & Adil, S. (2024). Malva sylvestris leaf powder as a feed additive affects the performance, carcass traits, meat quality attributes, serum antioxidants, stress physiology, intestinal bacterial counts, and gut morphology of broiler chicken. Frontiers in Physiology, 15, 1462018.
Cavani, C., Petracci, M., Trocino, A., & Xiccato, G. (2009). Advances in research on poultry and rabbit meat quality. Italian Journal of Animal Science, 8(Suppl. 2), 741–750. https://doi.org/10.4081/ijas.2009.s2.741
Cesari, V., Gislon, G., Bava, L., & Toschi, I. (2024). Text mining approach in chicken meat welfare. Poultry Science, 103(12), 104349.
Choi, J., Kong, B., Bowker, B. C., Zhuang, H., & Kim, W. K. (2023). Nutritional Strategies to Improve Meat Quality and Composition in the Challenging Conditions of Broiler Production: A Review. Animals, 13(8), 1386. https://doi.org/10.3390/ani13081386
Collington, G. K., Parker, D. S., & Armstrong, D. G. (1990). The influence of inclusion of either an antibiotic or a probiotic in the diet on the development of digestive enzyme activity in the pig. British Journal of Nutrition, 64(1), 59–70. https://doi.org/10.1079/BJN19900008
Çelebi, Ş., Balcı, M. A., & Bozkurt, M. (2016). Broiler rasyonlarında antioksidan kullanımının et kalitesi üzerine etkileri. Kafkas Üniversitesi Veteriner Fakültesi Dergisi, 22(Suppl. 1), S123–S130.
Çayan, H. (2018). Etlik piliç ve yumurta tavuklarında vejetaryen beslemenin performans, ürün kalitesi ve organoleptik özellikler üzerine etkileri.
Dahiya, J. P., Wilkie, D. C., Van Kessel, A. G., & Drew, M. D. (2006). Potential strategies for controlling necrotic enteritis in broiler chickens in post-antibiotic era. Animal Feed Science and Technology, 129(1–2), 60–88. https://doi.org/10.1016/j.anifeedsci.2005.12.003
Delles, R. M., Xiong, Y. L., True, A. D., Ao, T., & Dawson, K. A. (2014). Dietary antioxidant supplementation enhances lipid and protein oxidative stability of chicken broiler meat through promotion of antioxidant enzyme activity. Poultry Science, 93(6), 1561–1570. https://doi.org/10.3382/ps.2013-03682
Demir, G., & Arslan, R. (2022). Sensitivity Analysis in Multi-Criterion Decision-Making Problems. Ankara Hacı Bayram Veli Üniversitesi İktisadi ve İdari Bilimler Fakültesi Dergisi, 24(3), 1025-1056. https://doi.org/10.26745/ahbvuibfd.1103531
Demir, G., Chatterjee, P., & Pamucar, D. (2024). Sensitivity analysis in multi-criteria decision making: A state-of-the-art research perspective using bibliometric analysis. Expert Systems with Applications, 237(Part C), 121660. https://doi.org/10.1016/j.eswa.2023.121660
Di Pasqua, R., Betts, G., Hoskins, N., Edwards, M., Ercolini, D., & Mauriello, G. (2007). Membrane toxicity of antimicrobial compounds from essential oils. Journal of Agricultural and Food Chemistry, 55(12), 4863–4870. https://doi.org/10.1021/jf0636465
Dinasarki, D., Tenrisanna, V., & Amrawaty, A. A. (2024). Broiler Product Quality: The Global Scientific Research Landscape and Implications for Marketing Performance. International Journal of Agriculture and Biosciences, 13(3), 306-312.
Eray, O., Alsan, İ., Filik, A. G., Filik, G. (2017). Antioksidanlara Genel Bir Bakış ve Kanatlı Hayvanlarda Kullanımı. Science and Technique in the 21st Century, 2(8), 25-36.
Erhan, M. K. (2016). Kanatlı Beslemesinde Antibiyotiklere Alternatif Olarak Kullanılan Bitki Ekstraktlarının Performans Değerleri ve Diğer Bazı Parametreler Açısından Değerlendirilmesi. Alinteri Journal of Agriculture Science, 28(1), 45-54.
G.-B. Kim, Y.M. Seo, C.H. Kim, I.K. Paik, (2011). Effect of dietary prebiotic supplementation on the performance, intestinal microflora, and immune response of broiler chickens, Poultry Science, Volume 90, Issue 1, Pages 75-82, https://doi.org/10.3382/ps.2010-00732.
Garvin, D. A. (1984). What does “product quality” really mean? Sloan Management Review, 26(1), 25–43.
Gaskins, H. R., Collier, C. T., & Anderson, D. B. (2002). Antibiotics as growth promotants: Mode of action. Animal Biotechnology, 13(1), 29–42. https://doi.org/10.1081/ABIO-120005768
Giannenas, I., Bonos, E., Skoufos, I., & Tzora, A. (2018). Effects of herbal feed additives on performance parameters, intestinal microbiota, intestinal morphology and meat lipid oxidation of broiler chickens. British Poultry Science, 59(5), 725–735. https://doi.org/10.1080/00071668.2018.1483577
Gümüş, E., & Küçükersan, S. (2017). Etlik piliç rasyonlarına doğal antioksidan ilavesinin performans, et pH değeri ile karaciğer ve kanda antioksidan aktiviteye etkisi. Veteriner Hekimler Derneği Dergisi, 88(2), 82-94.
Herawati. (2010). The effect of feeding red ginger as phytobiotic on body weight gain, feed conversion and internal organs condition of broiler. International Journal of Poultry Science, 9(10), 963–967. https://doi.org/10.3923/ijps.2010.963.967
Janardhana V, Broadway MM, Bruce MP, Lowenthal JW, Geier MS, Hughes RJ, Bean AG. Prebiotics modulate immune responses in the gut-associated lymphoid tissue of chickens. J Nutr. 2009 Jul;139(7):1404-9. doi: 10.3945/jn.109.105007. Epub 2009 May 27. PMID: 19474157.
K.-W. Lee, H. Everts, A.C. Beynen, 2004.Essential Oils in Broiler Nutrition.International Journal of Poultry Science,3:738-752.https://scialert.net/abstract/?doi=ijps.2004.738.752
Kalemba, D., & Kunicka, A. (2003). Antibacterial and antifungal properties of essential oils. Current Medicinal Chemistry, 10(10), 813–829. https://doi.org/10.2174/0929867033457719
Kim, G.-B., Seo, Y. M., Kim, C. H., & Paik, I. K. (2011). Effect of dietary prebiotic supplementation on the performance, intestinal microflora, and immune response of broilers. Poultry Science, 90(1), 75–82. https://doi.org/10.3382/ps.2010-00732
Konyalıoğlu, S. (2001). Et Kalitesi Üzerine Diyetle Alınan E Vitamininin Etkileri. Journal of Animal Production, 42(2). https://izlik.org/JA57YZ43RW
Loetscher, Y., Kreuzer, M., & Messikommer, R. E. (2013). Oxidative stability of broiler meat of birds supplemented with rosemary leaves, rosehip fruits, chokeberry pomace and nettle. Poultry Science, 92(11), 2938–2948. https://doi.org/10.3382/ps.2013-03258
Lu, T., Harper, A. F., Zhao, J., & Dalloul, R. A. (2014). Effects of a dietary antioxidant blend and vitamin E on growth performance, oxidative status, and meat quality in broiler chickens fed a diet high in oxidants. Poultry Science, 93(7), 1649–1657. https://doi.org/10.3382/ps.2013-03826
Mafruchati, M., Kusuma Wardhana, A., & Wan Ismail, W. I. (2022). Disease and viruses as negative factor prohibiting the growth of broiler chicken embryo as research topic trend: a bibliometric review. F1000Research, 11, 1124.
Martín-Martín, A., Orduna-Malea, E., Thelwall, M., & Delgado López-Cózar, E. (2018). Google Scholar, Web of Science, and Scopus: A systematic comparison of citations in 252 subject categories. Journal of Informetrics, 12(4), 1160–1177. https://doi.org/10.1016/j.joi.2018.09.002
Mazur-Kuśnirek, M., Antoszkiewicz, Z., Lipiński, K., Kaliniewicz, J., & Kotlarczyk, S. (2019). The effect of polyphenols and vitamin E on the antioxidant status and meat quality of broiler chickens fed low-quality oil. Agriculture, 62(No. 287). https://doi.org/10.5194/aab-62-287-2019
Mir NA, Rafiq A, Kumar F, Singh V, Shukla V. Determinants of broiler chicken meat quality and factors affecting them: a review. J Food Sci Technol. 2017 Sep;54(10):2997-3009. Doi: 10.1007/s13197-017-2789-z. Epub 2017 Aug 28. PMID: 28974784; PMCID: PMC5603000.
Mongeon, P., & Paul-Hus, A. (2016). The journal coverage of Web of Science and Scopus: A comparative analysis. Scientometrics, 106(1), 213–228. https://doi.org/10.1007/s11192-015-1765-5
Ogbuewu IP, Okoro VM, Mbajiorgu CA. Meta-analysis of the influence of phytobiotic (pepper) supplementation in broiler chicken performance. Trop Anim Health Prod. 2020 Jan;52(1):17-30. doi: 10.1007/s11250-019-02118-3. Epub 2019 Nov 9. PMID: 31707686.
Omar, J. A., Hejazi, A., & Badran, R. (2016). Performance of broiler chickens supplemented with natural herb extract. Open Journal of Animal Sciences, 6(1), 68-74.
Pelicano, ERL & de, Souza & de, Souza & Oba, Alexandre & Norkus, EA & Kodawara, LM & de, Lima. (2003). Effect of different probiotics on broiler carcass and meat quality. Revista Brasileira de Ciência Avícola. 5. 10.1590/S1516-635X2003000300009.
Petracci, M., Mudalal, S., Soglia, F., & Cavani, C. (2015). Meat quality in fast-growing broiler chickens. World's Poultry Science Journal, 71(2), 363-374. https://doi.org/10.1017/S0043933915000367
Pranckutė, R. (2021). Web of Science (WoS) and Scopus: The titans of bibliographic information in today’s academic world. Publications, 9(1), 12. https://doi.org/10.3390/publications9010012
Raes, K., De Smet, S., & Huyghebaert, G. (2008). Lipid and protein oxidation of broiler meat as influenced by dietary natural antioxidant supplementation. Poultry Science, 87(8), 1682–1688. https://doi.org/10.3382/ps.2007-00384
Sharif, K. I. M., Omar, M., Noor, M. D. M., Ismail, M. A., Hassan, M. G., & Gilal, A. R. (2023). A Bibliometric Analysis of Research on Risks in the Poultry Farming Industry: Trends, Themes, Collaborations, and Technology Utilization. International Journal of Advanced Computer Science and Applications, 14(7).
Singh, V. K., Singh, P., Karmakar, M., Leta, J., & Mayr, P. (2021). The journal coverage of Web of Science, Scopus and Dimensions: A comparative analysis. Scientometrics, 126(6), 5113–5142. https://doi.org/10.1007/s11192-021-03948-5
Stutz, M. W., & Lawton, G. C. (1984). Effects of diet and antimicrobials on growth, feed efficiency and intestinal Clostridium perfringens in broiler chicks. Poultry Science, 63(10), 2036–2042. https://doi.org/10.3382/ps.0632036
Tejeda OJ, Calderon AJ, Arana JA, Meloche KJ, Starkey JD. Broiler chicken myofiber morphometrics and myogenic stem cell population heterogeneity1,2. Poult Sci. 2019 Sep 1;98(9):4123-4130. Doi: 10.3382/ps/pez287. PMID: 31144722.
Tiihonen K, Kettunen H, Bento MH, Saarinen M, Lahtinen S, Ouwehand AC, Schulze H, Rautonen N. The effect of feeding essential oils on broiler performance and gut microbiota. Br Poult Sci. 2010 Jun;51(3):381-92. doi: 10.1080/00071668.2010.496446. PMID: 20680873.
Uyanga, V. A., Musa, T. H., Oke, O. E., Zhao, J., Wang, X., Jiao, H., ... & Lin, H. (2023). Global trends and research frontiers on heat stress in poultry from 2000 to 2021: A bibliometric analysis. Frontiers in Physiology, 14, 1123582.
Wei, A., & Shibamoto, T. (2007). Antioxidant activities and volatile constituents of various essential oils. Journal of Agricultural and Food Chemistry, 55(5), 1737–1742. https://doi.org/10.1021/jf062959x
Wickramasuriya, S. S., Ault, J., Ritchie, S., Gay, C. G., & Lillehoj, H. S. (2024). Alternatives to antibiotic growth promoters for Poultry: A bibliometric analysis of the research journals. Poultry Science, 103987.
Windisch, W., Schedle, K., Plitzner, C., & Kroismayr, A. (2008). Use of phytogenic products as feed additives for swine and poultry. Journal of Animal Science, 86(E. Suppl.), E140–E148. https://doi.org/10.2527/jas.2007-0459
Wu, Y., Zhai, S., Fang, M., Zhang, H., & Chen, Y. (2024). Evaluation of the growth performance, meat quality, and gut microbiota of broilers fed diets containing walnut green husk extract. Poultry Science, 103(11), 104176.
Yang, Y., Iji, P. A., & Choct, M. (2009). Dietary modulation of gut microflora in broiler chickens: A review of the role of six kinds of alternatives to in-feed antibiotics. World’s Poultry Science Journal, 65(1), 97–114. https://doi.org/10.1017/S0043933909000087
Yardibi, F., & Fırat, M. (2021). A bibliometric analysis of publications during the last decade on growth performance in animal science. Hayvansal Üretim, 62(2), 99-108.
Yeşilbağ, D. (2007). Fitobiyotikler. Uludağ Üniversitesi Veteriner Fakültesi Dergisi, 26(1-2), 33-39.
Downloads
Published
How to Cite
Issue
Section
License
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.


